Vikas Sangal | Chemical Engineering | Best Researcher Award

Prof. Dr. Vikas Sangal | Chemical Engineering | Best Researcher Award

Associate Professor at MNIT Jaipur, India

Dr. Vikas Kumar Sangal is an accomplished academic and researcher in the field of Chemical Engineering. Currently serving as an Associate Professor at Malaviya National Institute of Technology (MNIT) Jaipur, he has over 20 years of teaching and research experience. His expertise lies in wastewater treatment, environmental pollution control, and advanced separation processes. His contributions to academia include numerous SCI-indexed journal publications, focusing on sustainable and innovative chemical engineering solutions. As a dedicated educator and researcher, he has guided several postgraduate and doctoral students, contributing to advancements in chemical process engineering. His work in electrochemical treatment, electrocoagulation, and sustainable industrial wastewater management has made a significant impact in the field. Dr. Sangal’s academic excellence, commitment to research, and innovative contributions position him as a leading expert in chemical engineering.

Professional Profile

Education

Dr. Vikas Kumar Sangal holds a B.Tech in Chemical Engineering (2000) from CCS University, where he graduated with 80.30% marks. He pursued his M.Tech in Chemical Engineering from IIT Roorkee (2003), achieving an impressive CGPA of 9.37/10. Furthering his academic journey, he obtained a Ph.D. in Chemical Engineering from Thapar University, Patiala (2012), with a thesis titled “Studies on Divided Wall Distillation Column” under the guidance of Prof. I.M. Mishra and Prof. Vineet Kumar. His educational background reflects a strong foundation in chemical process design, separation techniques, and environmental engineering. His research during his doctoral studies focused on energy-efficient separation processes, which remain a key area of his research interest today.

Professional Experience

Dr. Sangal has an extensive professional career spanning over two decades in teaching and research. He began as a Lecturer at K. N. Modi Institute of Engineering & Technology (2003-2006), followed by his tenure at Thapar University, where he served as Lecturer (2006-2009), Assistant Professor (2009-2016), and Associate Professor (2016-2018). Since June 2018, he has been an Associate Professor at MNIT Jaipur, where he continues to contribute to chemical process engineering, environmental sustainability, and advanced separation techniques. His extensive teaching career, coupled with strong research engagement, has enabled him to mentor numerous students, undertake sponsored research projects, and contribute significantly to academic advancements in chemical engineering.

Research Interests

Dr. Sangal’s primary research interests include wastewater treatment, electrochemical processes, and environmental pollution control. He specializes in advanced oxidation processes, electrocoagulation, and electro-Fenton treatment techniques for the remediation of industrial effluents. His work focuses on developing sustainable and energy-efficient methods for treating pharmaceutical, textile, and tannery wastewater. Recent research has explored solar-powered electrocatalytic processes and continuous-mode electrochemical treatments, contributing to environmentally friendly wastewater management. His research has been published in leading SCI-indexed journals, demonstrating its impact and significance in the field of chemical and environmental engineering.

Awards and Honors

Dr. Vikas Kumar Sangal has received notable recognition for his contributions to research and academia. In 2022, he was honored as a Fellow of the Institution of Engineers, acknowledging his outstanding work in chemical engineering. Additionally, his research has been widely cited, and his contributions to electrochemical treatment and environmental sustainability have earned him academic recognition. His continuous involvement in high-impact research, coupled with his commitment to innovation, has positioned him as a distinguished researcher. Dr. Sangal actively participates in national and international conferences, further strengthening his reputation as a leading expert in chemical engineering.

Conclusion

Dr. Vikas Kumar Sangal has a strong academic background, an impressive research portfolio, and significant contributions to chemical engineering with a focus on wastewater treatment and environmental sustainability. His recent publications in SCI journals demonstrate continued research productivity. To further enhance eligibility for the Best Researcher Award, greater international collaborations, patents, and high-impact research funding could be beneficial. However, based on his current contributions and recognition, he is a strong contender for the award.

Publications Top Noted

1. Machine Learning & Catalytic Wet Peroxidation

  • Title: Machine learning enabled catalytic wet peroxidation of levofloxacin bearing wastewater using Cu/MCM-41
  • Authors: G. Rajput, V. Gosu, V.K. Sangal, R.B. Gupta, V. Subbaramaiah
  • Journal: Chemical Engineering Science
  • Year: 2025
  • Citations: 0

2. Electrocoagulation in Textile Effluent Treatment

  • Title: Treatment of textile effluent by electrocoagulation in a novel reactor to mitigate environmental pollution
  • Authors: P. Agarwal, V.K. Sangal, S. Mathur
  • Journal: International Journal of Environmental Science and Technology
  • Year: 2025
  • Citations: 0

3. Electrochemical Treatment of Pharmaceutical Wastewater

  • Title: Electrochemical Treatment of Doxycycline-Containing Wastewater from Pharmaceutical Industry in Batch and Once-Through Continuous Mode
  • Authors: N.K. Dehariya, S. Rajoria, V.K. Sangal
  • Journal: Journal of the Electrochemical Society
  • Year: 2024
  • Citations: 0

4. Solar-Powered Electrocatalytic Treatment

  • Title: Solar powered electrocatalytic treatment of actual human urine coupled with hydrogen production using Ti/MMO for the removal of nitrogen-based compounds
  • Authors: J. Singla, I. Thakur, A.K. Verma, V.K. Sangal
  • Journal: Journal of the Indian Chemical Society
  • Year: 2024
  • Citations: 0

5. Sequential Electro-Coagulation & Electro-Fenton for Textile Wastewater

  • Title: Sequential electro-coagulation and electro-Fenton processes for the treatment of textile wastewater
  • Authors: P. Agarwal, V.K. Sangal, S. Mathur
  • Journal: Water Environment Research
  • Year: 2024
  • Citations: 1

6. Continuous Mode Electrocoagulation for Tannery Wastewater

  • Title: Once through continuous mode electrocoagulation for tannery wastewater remediation: Process optimization and performance evaluation
  • Authors: S.K. Meena, S.O. Meena, V.K. Sangal
  • Journal: Journal of the Indian Chemical Society
  • Year: 2024
  • Citations: 0

7. Electroplating Wastewater Treatment & Cost Analysis

  • Title: Electroplating wastewater treatment by electro-oxidation using synthesized new electrode: Experimental, optimization, kinetics, and cost analysis
  • Authors: S. Rajoria, M. Vashishtha, V.K. Sangal
  • Journal: Process Safety and Environmental Protection
  • Year: 2024
  • Citations: 14

8. Electro-Fenton Process for Electroplating Wastewater

  • Title: Oxidative degradation of electroplating wastewater by an electro-Fenton process using GO/TiO2NTs electrode
  • Authors: S. Rajoria, M. Vashishtha, V.K. Sangal
  • Journal: Environmental Engineering Research
  • Year: 2024
  • Citations: 7

9. Advances in Electrode Materials for Wastewater Treatment

  • Title: Developments and Advances in Electrode Materials for Electrochemical Treatment of Industrial Wastewater
  • Authors: S. Rajoria, M. Vashishtha, V.K. Sangal
  • Journal: Arabian Journal for Science and Engineering
  • Year: 2024
  • Citations: 0

 

Lin Hu | Chemistry | Best Researcher Award

Dr. Lin Hu | Chemistry | Best Researcher Award

Jiaxing University, China

Dr. Hu Lin, a Ph.D. and Master’s supervisor, is an accomplished researcher specializing in organic and perovskite solar cells, PEDOT:PSS conductive polymers, and flexible electronic device fabrication. After earning his Master’s degree from Nanchang University in 2016 and his Ph.D. from Huazhong University of Science and Technology in 2019, he joined Jiaxing University. Despite being early in his academic career, Dr. Hu has made remarkable contributions, publishing over 30 high-impact SCI papers in esteemed journals such as Advanced Materials and Journal of Materials Chemistry A. His innovative approach is further reflected in six patent applications, three of which have been granted. As both a mentor and a researcher, he plays a pivotal role in advancing renewable energy technologies and materials science. With a strong foundation in cutting-edge research and a growing reputation, Dr. Hu Lin exemplifies excellence in academic productivity and innovation.

Professional Profile

Education

Dr. Hu Lin’s academic journey reflects a strong foundation in materials science and innovation. He earned his Master’s degree from Nanchang University in 2016 under the guidance of Professor Yiwang Chen, focusing on advanced materials research. Building on this, he pursued his Ph.D. at Huazhong University of Science and Technology, completing it in 2019 under the mentorship of Professor Yinhua Zhou. During his doctoral studies, Dr. Hu delved deeper into the development of organic and perovskite solar cells, PEDOT:PSS conductive polymers, and flexible electronic devices, establishing himself as an expert in these fields. His rigorous academic training equipped him with the technical expertise and innovative mindset needed to tackle critical challenges in renewable energy and materials science. These educational experiences laid the groundwork for his impactful research career and his ongoing contributions as a faculty member and mentor at Jiaxing University.

Professional Experience

Dr. Hu Lin has rapidly established himself as a prominent researcher and educator in materials science. In 2019, he joined Jiaxing University as a faculty member immediately after completing his Ph.D. at Huazhong University of Science and Technology. His professional work focuses on cutting-edge research in organic and perovskite solar cells, PEDOT:PSS conductive polymers, and flexible electronic devices—areas of significant importance for renewable energy and advanced electronics. As both a researcher and a Master’s supervisor, Dr. Hu has published over 30 high-impact SCI papers in renowned journals such as Advanced Materials and Advanced Functional Materials. His innovative contributions extend beyond academia, with six patent applications, including three granted patents, underscoring his commitment to translating research into practical solutions. Dr. Hu’s dedication to academic excellence, innovation, and mentorship has solidified his reputation as a rising leader in materials science and renewable energy technologies.

Research Interest

Dr. Hu Lin’s research interests lie at the forefront of materials science, with a strong focus on renewable energy and advanced electronic devices. His work centers on organic and perovskite solar cells, exploring innovative approaches to improve their efficiency, stability, and scalability for practical applications. Additionally, he specializes in PEDOT:PSS conductive polymers, investigating their potential as versatile materials for flexible and transparent electronics. Dr. Hu is also dedicated to advancing the fabrication of flexible electronic devices, which have promising applications in wearable technology and next-generation displays. By combining fundamental research with practical innovations, he aims to address critical challenges in energy sustainability and device miniaturization. His research not only contributes to the academic understanding of these materials but also paves the way for real-world applications, making significant strides in both environmental and technological advancements. Dr. Hu’s work embodies a vision of merging science with innovation for a sustainable future.

Award and Honor

Dr. Hu Lin has been recognized for his exceptional contributions to materials science and renewable energy research through various awards and honors. Although specific accolades are not detailed in his profile, his accomplishments as a prolific researcher and innovator speak volumes about his growing reputation. With over 30 high-impact publications in prestigious journals such as Advanced Materials and Advanced Functional Materials, and multiple granted patents, Dr. Hu’s work has undoubtedly earned him respect in the academic and scientific communities. His early-career achievements, including groundbreaking advancements in organic and perovskite solar cells, showcase his potential for further recognition at both national and international levels. As a Master’s supervisor and active contributor to cutting-edge technologies, Dr. Hu’s dedication to innovation and mentorship positions him as a strong contender for prestigious awards in renewable energy, materials science, and applied research in the future.

Conclusion

Hu Lin is a strong candidate for the Best Researcher Award. His prolific publishing record, innovative contributions in cutting-edge research areas, and dedication to both academic and applied advancements establish him as a rising star in materials science. Addressing the areas of improvement, such as showcasing the broader impact of his research and securing notable international recognition, could further solidify his eligibility. Overall, his accomplishments and potential make him a highly competitive nominee for this award.

Publications top noted

  • Title: Ionized Phenanthroline Derivatives Suppressing Interface Chemical Interactions with Active Layer for High-efficiency Organic Solar Cells with Exceptional Device Stability
    Authors: Hu, L., Quan, J., Li, J., Li, Z., Chen, Y.
    Journal: Advanced Materials
    Year: 2024
    Volume: 36(49), Article number 2413232
    Citations: 1
  • Title: PEDOT Counterions Enabled Oriented Polyaniline Nanorods for High Performance Flexible Supercapacitors
    Authors: Jin, Y., Li, Z., Huang, S., Wang, H., Li, Z.
    Journal: Colloids and Surfaces A: Physicochemical and Engineering Aspects
    Year: 2024
    Volume: 697, Article number 134461
    Citations: 3
  • Title: Ethyl Thioglycolate Assisted Multifunctional Surface Modulation for Efficient and Stable Inverted Perovskite Solar Cells
    Authors: Wang, Y., Wang, F., Song, J., Yan, W., Gao, F.
    Journal: Advanced Functional Materials
    Year: 2024
    Volume: 34(38), Article number 2402632
    Citations: 4
  • Title: Small Molecule Perylene Diimide Derivatives with Different Bay Site Modifications as Cathode Interface Layers for Organic Solar Cells
    Authors: Wang, Y., Zhou, D., Lan, S., Xu, Z., Chen, L.
    Journal: Chemical Engineering Journal
    Year: 2024
    Volume: 496, Article number 154206
    Citations: 2
  • Title: N-Type Small Molecule Electrolyte Cathode Interface Layer with Thickness Insensitivity for Organic Solar Cells
    Authors: Zhou, D., Wang, Y., Li, Y., Xu, Z., Chen, L.
    Journal: Nano Energy
    Year: 2024
    Volume: 128, Article number 109890
    Citations: 5
  • Title: Synergistically Modulating the Bay and Amid Sites of a Perylene Diimide Cathode Interface Layer for High-Efficiency and High-Stability Organic Solar Cells
    Authors: Wang, J., Zhou, D., Quan, J., Li, Z., Chen, L.
    Journal: ACS Sustainable Chemistry and Engineering
    Year: 2024
    Volume: 12(30), Pages 11385–11395
    Citations: 3
  • Title: Biobased Thermoset Substrate for Flexible and Sustainable Organic Photovoltaics
    Authors: Tian, J., You, Y., Zhou, H., Xie, Y., Hu, X.
    Journal: Advanced Functional Materials
    Year: 2024
    Volume: 34(29), Article number 2400547
    Citations: 5
  • Title: Synchronous Modulation of Hole-Selective Self-Assembled Monolayer and Buried Interface for Inverted Perovskite Solar Cells
    Authors: Wang, Y., Ye, J., Song, J., Li, Z., Yan, W.
    Journal: Cell Reports Physical Science
    Year: 2024
    Volume: 5(6), Article number 101992
    Citations: 1
  • Title: Doping of ZnO Electron Transport Layer with Organic Dye Molecules to Enhance Efficiency and Photo-Stability of the Non-Fullerene Organic Solar Cells
    Authors: Hu, L., Han, L., Quan, J., Li, Z., Chen, L.
    Journal: Small
    Year: 2024
    Volume: 20(21), Article number 2310125
    Citations: 3
  • Title: N-Type Small Molecule Electron Transport Layers with Excellent Surface Energy and Moisture Resistance Siloxane for Non-Fullerene Organic Solar Cells
    Authors: Li, Y., Zhou, D., Han, L., Xu, H., Chen, L.
    Journal: Small
    Year: 2024
    Volume: 20(19), Article number 2308961
    Citations: Not specified in the provided data.

Idrees Khan | Applied Chemistry | Best Researcher Award

Dr Idrees Khan | Applied Chemistry | Best Researcher Award

Postdoctoral fellow,School of Chemistry and Chemical Engineering, Northwestern Polytechnical University, China

Dr. Idrees Khan is a renowned scientist specializing in Applied Chemistry with expertise in nanomaterials and nanocomposites for environmental applications. With over 60 research publications and more than 8,000 citations, Dr. Khan’s work has garnered international recognition, including his inclusion in the top 2% scientists of 2024. His pioneering research focuses on enhancing the photocatalytic efficiency of metal oxide nanoparticles, contributing significantly to environmental sustainability. Dr. Khan is a Postdoctoral Fellow at Northwestern Polytechnical University, China, and an Honorary Postdoctoral Fellow at INTI International University, Malaysia. His efforts in computational simulations, alongside experimental techniques, position him as a leader in his field. Dr. Khan is dedicated to advancing innovative solutions for environmental pollution using cutting-edge nanotechnology, with his review article on nanoparticles being the most popular on Science Direct.

Profile

Strengths for the Award:

  1. Extensive Research Contributions:
    • Dr. Khan has an impressive track record with over 60 research articles published in reputable journals and more than 8,000 citations, a testament to the impact and quality of his work. His review article on nanoparticles, “Nanoparticles: Properties, applications, and toxicities,” has garnered significant attention, making it one of the most popular articles on ScienceDirect with the highest citations.
  2. High Research Impact:
    • His inclusion in the top 2% of scientists in 2024 highlights his global recognition and the influence of his research in his field. His work has contributed to enhancing the photocatalytic efficiency of metal oxide nanoparticles, which has vital implications for environmental sustainability.
  3. Interdisciplinary Expertise:
    • Dr. Khan’s expertise spans both experimental and computational research, covering the synthesis of advanced nanomaterials, their applications in environmental cleanup, and computational simulations. This broad skill set gives him an edge in tackling multifaceted problems in applied chemistry and materials science.
  4. International Collaboration and Recognition:
    • His experience as a postdoctoral fellow at prestigious institutions like Northwestern Polytechnical University in China and INTI International University in Malaysia underscores his global network and recognition in the scientific community. This international experience enriches his research and outreach efforts.
  5. Diverse Range of Research Topics:
    • His research interests range from photocatalysis, material science, and environmental monitoring to toxicology and nanocomposite development. Such diversity broadens his ability to solve complex environmental problems, contributing significantly to sustainable technologies.
  6. Academic Background and Teaching Experience:
    • Dr. Khan has demonstrated strong teaching capabilities, having worked as a visiting lecturer at the University of Malakand and currently serving as an honorary postdoctoral fellow. His ability to bridge teaching with research adds another layer to his profile as a well-rounded academic.
  7. Leadership in Research Publications:
    • His high citation count, coupled with his leadership in publishing high-impact articles, indicates his strong research direction and ability to lead projects that resonate with the scientific community. His involvement in cutting-edge studies like photocatalytic applications and microwave absorption for environmental remediation demonstrates his leadership in emerging fields.

Areas for Improvement:

  1. Public Outreach and Broader Engagement:
    • While Dr. Khan’s research is impactful, there is potential for expanding his public engagement efforts. He could focus on bridging the gap between scientific research and public awareness by making his findings more accessible to non-experts, particularly in the context of environmental sustainability.
  2. Diversity in Research Funding and Projects:
    • Seeking more diverse funding sources or collaborative projects could enhance his research scope. Additionally, focusing on applications of nanotechnology in renewable energy or climate change mitigation could be an area for further growth.
  3. Collaboration with Industry:
    • Increased collaboration with industry could allow for the practical application of his research, translating his findings from theoretical studies to real-world, commercialized technologies. Partnering with industry experts in nanomaterials development and environmental engineering could lead to impactful innovations.

Education

Dr. Idrees Khan holds a Ph.D. in Applied Chemistry from Bacha Khan University (2020) with a CGPA of 3.5. He completed his M.Phil. in Applied Chemistry from University of Malakand in 2016, achieving a CGPA of 3.44. Prior to his graduate studies, Dr. Khan obtained a BS in Applied Chemistry from the University of Malakand (2013), where he excelled with a CGPA of 3.56. He also earned a Bachelor of Education from Sarhad University (2015). His early education includes S.S.C and F.Sc from the BISE Saidu Sharif Swat. Dr. Khan’s strong academic foundation has empowered him to pursue a career in nanomaterials research, specializing in photocatalysis and nanocomposites. His dedication to learning and research has driven his success in both academia and scientific innovation.

Experience 

Dr. Idrees Khan has significant academic and research experience. He served as a Visiting Lecturer in the Department of Chemistry at the University of Malakand (2015-2018), where he taught undergraduate students and mentored them in various chemistry courses. He is currently a Postdoctoral Fellow at Northwestern Polytechnical University, China, since May 2023, where he focuses on advanced nanomaterials for environmental applications. Additionally, Dr. Khan holds the position of Honorary Postdoctoral Fellow at INTI International University, Malaysia, since June 2023. His role involves contributing to collaborative research efforts and fostering innovation in the field of nanotechnology. His experience spans various research methodologies, including computational simulations, nanomaterials synthesis, and environmental remediation. Dr. Khan has also participated in numerous international conferences and workshops, sharing his expertise and contributing to the global scientific community.

Research Focus 

Dr. Idrees Khan’s research primarily focuses on the development and application of nanomaterials and nanocomposites for environmental sustainability. He works on enhancing the photocatalytic efficiency of metal oxide nanoparticles to address environmental issues, such as pollution control and wastewater treatment. His research delves into the synthesis and characterization of nanostructured materials, particularly supported and unsupported metal oxide nanoparticles, and their photocatalytic applications for degrading organic pollutants. Dr. Khan also specializes in computational simulations, particularly in studying the behavior of nanomaterials in environmental settings. His work extends to exploring the toxicities and applications of nanoparticles in environmental decontamination. His research aims to develop sustainable, efficient solutions for environmental challenges, including water purification and air quality improvement. Dr. Khan is also working on biological applications of nanomaterials and their interactions with pollutants and microorganisms.

Publications

  1. Strategically coupled tungsten oxide-zinc oxide photosystems for solar-driven nerve agent simulant degradation and hydrogen evolution 🌞⚗️
  2. Preparation and performance of porous carbon microwave absorber with high porosity from carbonized natural plant fibers 🌱🧯
  3. Fabrication of polydopamine doped helical/chiral porous carbon fiber (HPCFs@PDA) and N-doped carbon layers (HPCFs@NCLs) for their application as wave absorber with ultrawide EAB 📡🔬
  4. Controllable and lightweight ZIF-67@PAN derived Co@C nanocomposites with tunable and broadband microwave absorption 🧲🌐
  5. Gold recovery through synergetic adsorption and reduction using acid–base additive-reinforced tubular carbon nanofibers 💰🧪
  6. Advancements in adsorption and photodegradation technologies for Rhodamine B dye wastewater treatment: fundamentals, applications, and future directions 💧💡
  7. Highly selective sensing of toxic NOx gases for environmental monitoring using Ru-doped single-walled TiO2 nanotube: A density functional theory study 🏭⚙️
  8. Adsorption of thiophene over the transition metal-decorated C2N monolayer: A DFT approach 🌫️🧑‍🔬
  9. Improvement of the Photocatalytic and Biological Activities of Copper Oxide Nanoparticles by Coupling with Barium Oxide Nanoparticles 🧪🌿
  10. Understanding the toxicity of trinitrophenol and promising decontamination strategies for its neutralization: Challenges and future perspectives ☠️🌍

Conclusion

Dr. Idrees Khan is highly deserving of the Best Researcher Award due to his outstanding contributions to appliedchemistry and nanomaterials science, his interdisciplinary expertise, and his significant impact on environmental sustainability. His prolific research output, leadership in groundbreaking studies, and international collaborations solidify his reputation as a leader in his field. Despite some opportunities for broader outreach and industry collaboration, his overall profile is incredibly strong, making him a top contender for such an award.Dr. Khan’s extensive body of work, particularly in photocatalysis and nanocomposites, as well as his growing international recognition, aligns perfectly with the criteria typically sought in award recipients.

Sikander Ali | Chemistry | Young Scientist Award

Mr. Sikander Ali | Chemistry | Young Scientist Award

Research Associate Riphah international university-Lahore. Pakistan

Sikander Ali is an accomplished researcher in applied mathematics, specializing in graph theory, cryptography, and fault-tolerant systems. An active member of international research groups, he has consistently contributed to the advancement of mathematical theory and practical applications through innovative research projects and collaborations.

Profile

Scopus.com

Education 🎓

  • MS in Mathematics (2021–2023): COMSATS University, Sahiwal Campus, GPA 3.42, with a focus on Applied Mathematics and Graph Theory.
  • MSc in Mathematics (2018–2020): COMSATS University, Sahiwal Campus, GPA 3.45, specializing in Cryptography and Numerical Analysis; awarded a 2nd position medal.
  • Bachelor’s in Mathematics (2015–2017): GOVT College Bahawal Nagar, with a solid foundation in mathematics and physics.
  • Intermediate in Pre-Engineering (2013–2015): GOVT College Bahawal Nagar.

Experience 📈

Sikander has extensive teaching experience, having served as a lecturer at prominent institutions like Riphah International University and Army Public School and College System. His teaching expertise covers both fundamental and advanced mathematics, where he focuses on fostering deep comprehension among his students.

Research Interests 🔍

Sikander’s research is centered on advanced topics in mathematics, including:

  • Graph Theory: Resolvability Parameters and Graph Labelling
  • Cryptography: Developing secure frameworks
  • Fault-Tolerant Embedding: Emphasis on nanosheet and nanotube structures
  • Neutrosophic Fuzzy Sets: Applications in various mathematical problems

Awards 🏆

  • 2nd Position Medal in MSc: Recognized for academic excellence at COMSATS University.
  • PEEF Scholarship: Awarded for outstanding performance.
  • Inter-Campus First Prize: Earned recognition as a top debater.
  • Vice President of COMSATS Sports Society: Led the sports society and promoted active participation.

Publications Top Notes📚:

Sikander has published widely in reputable journals, covering topics like graph theory and nano-structures. Below are some highlights:

Ali, S., Azeem, M., Zahid, M. A. Double Resolvability Parameters of Fosmidomycin Anti-Malaria Drug and Exchange Property. Heliyon (2024). DOI: 10.1016/j.heliyon.2024.e33211.

Ali, S., Azeem, M., Jamil, M. K. Resolving Set and Exchange Property in Nanotube. AIMS Mathematics, 9(8), 20 June 2023. DOI:10.3934/math.20231035.

Ali, S., Koam, N. A., Azeem, M. Double Edge Resolving Set for Nanosheet Structure. Heliyon (2024). DOI: 10.1016/j.heliyon.2024.e26992.

Manmohan Singh Chauhan | Green Chemistry | Best Researcher Award

Dr. Manmohan Singh Chauhan | Green Chemistry | Best Researcher Award

Assistant Professor, Amity University Rajasthan, India

Dr. Manmohan Singh Chauhan is an Assistant Professor at Amity University Rajasthan, specializing in organic chemistry and materials science. His research focuses on innovative applications in green chemistry, water purification, and catalysis. With extensive experience in academia and research, Dr. Chauhan has significantly contributed to the scientific community through his innovative research and teaching. He has also supervised multiple Ph.D. students and led numerous research projects, emphasizing sustainable and eco-friendly solutions.

Profile

Scopus

Strengths for the Award:

  1. Extensive Research Contributions: Dr. Manmohan Singh Chauhan has an impressive research portfolio with numerous publications in reputable journals, including those indexed in Scopus and Web of Science. His research covers diverse areas such as green chemistry, water purification, and catalysis, highlighting his broad expertise.
  2. Active Research Projects: He is involved in significant research projects, including a currently ongoing RPCB project and successfully completed BIRAC and DRDO projects. These projects demonstrate his ability to secure funding and manage research initiatives effectively.
  3. Ph.D. Supervision and Mentorship: Dr. Chauhan has successfully supervised multiple Ph.D. students, with several already awarded their degrees. This reflects his commitment to academic mentorship and contribution to the development of future researchers.
  4. Patent Filings and Innovation: He has filed patents, indicating a focus on innovation and practical applications of his research, which are crucial for societal impact and industrial relevance.
  5. Conference Organization and Presentations: Dr. Chauhan has organized international and national conferences, showcasing his leadership in the academic community. His frequent presentations at various conferences indicate active participation in scholarly discourse.
  6. Collaborative Work: His research includes collaboration with other researchers, evident from multiple co-authored publications. This collaborative approach is essential for interdisciplinary research and knowledge sharing.

Areas for Improvement:

  1. Broader International Collaboration: While Dr. Chauhan has a strong national presence, expanding his collaborations internationally could further enhance his research impact and recognition globally.
  2. Higher Impact Publications: Although Dr. Chauhan has published extensively, aiming for more publications in high-impact journals would further elevate his research profile.
  3. Industry Collaboration: Increasing collaborations with industry partners could lead to more practical applications of his research, enhancing the societal impact and potential for commercialization.
  4. Grant Acquisition: While he has successfully secured research funding, diversifying the sources and increasing the scale of funding could support more ambitious research projects.

🎓 Education:

Dr. Chauhan earned his Ph.D. in Chemistry from the University of Delhi in 2016. Prior to that, he achieved commendable rankings in national-level exams, securing a CSIR-NET (JRF) rank of AIR 430 and a GATE rank of AIR 821 in 2010. His doctoral research involved the synthesis of recyclable organocatalysts for asymmetric organic reactions, which has been foundational to his career in chemical research and education.

🏢 Experience:

Dr. Chauhan has held the position of Assistant Professor-II at Amity University Rajasthan since December 2017. Before this, he served as an Assistant Professor-I at JECRC University, Jaipur. His experience extends over a decade, during which he has contributed to academia through teaching, research supervision, and curriculum development. His academic career is marked by a strong commitment to fostering research and development in the field of chemistry.

🔬 Research Interests:

Dr. Chauhan’s research interests are diverse and centered around the “Indian Knowledge System, Material design & Synthesis, MOF and COF based catalysis, Green Chemistry, Water Purification, and Organic Synthesis”. His work aims to address global challenges through innovative materials and sustainable practices, particularly in water purification and eco-friendly material development.

🏆 Awards:

Dr. Chauhan’s achievements in research and academia have been recognized through various awards and nominations. He has been instrumental in securing and completing high-impact research projects funded by prestigious organizations such as BIRAC and DRDO. His contributions have significantly advanced the field of green chemistry and sustainable materials.

🖋️ Publications Top Notes:

  1. Unveiling the Nano World: Expanding Food Safety Monitoring Through Nano-Biosensor TechnologyJ. Food Chem Nanotechnol, 2024. Read here. (Cited by: Scopus Indexed)
  2. Natural Fruit Waste used as Nano-Green Catalysts in Schiff base Reaction of Different Derivatives of Aromatic Amines and BenzaldehydesJ. Food Chem Nanotechnol, 2024. Read here. (Cited by: Scopus Indexed)
  3. Optimization and Bioassay Guided Comparative Techniques for Efficient Extraction of Lutein Esters from Tagetes erecta (Var. Pusa Narangi Genda) FlowersMass Spectrometry Letters, 2024. Read here. (Cited by: SCIE Indexed)
  4. Green Synthesis of Metal nanoparticles and their Medicinal Application in treatment of CancerNano Life, 2024. Read here. (Cited by: SCI Indexed, I.F.= 0.9)
  5. Comparative study of NiO/CuO/Ag doped graphene based materials for reduction of nitroaromatic compounds and degradation of dye with statistical studyScientific Reports, 2024. Read here. (Cited by: SCI Indexed, I.F.= 4.99)

… and many more, covering topics from sustainable chemistry to advanced material science.

Conclusion:

Dr. Manmohan Singh Chauhan is a strong candidate for the “Best Researcher Award” due to his extensive research contributions, successful project management, and active participation in the academic community. With continued focus on international collaboration, high-impact publications, and industry partnerships, he could further enhance his research profile and impact.

Mingxin Lou | Green Chemistry | Best Researcher Award

Prof Dr. Mingxin Lou | Green Chemistry | Best Researcher Award

Professor, Lanzhou University, China

🔬 Mingxin Liu, Ph.D., is a professor of chemistry at Lanzhou University and a principal investigator at the State Key Laboratory of Applied Organic Chemistry. His research focuses on sustainable chemical processes and green chemistry, earning him numerous international awards.

Profile

Scopus

Education

  • Joint Postdoctoral Fellow (2017-2020) at University of Michigan and McGill University under Professors Zetian Mi and Chao-Jun Li.
  • Ph.D. in Organic Chemistry (2012-2017) from McGill University. Thesis: Developing More Sustainable Aldehyde Oxidation & Reduction in Water.
  • B.Sc. in Chemical Biology (2008-2012) from Tsinghua University.

Experience

  • Professor of Chemistry (12/2020 – present) at Lanzhou University.
  • Principal Investigator & PhD Supervisor (01/2021 – present) at State Key Laboratory of Applied Organic Chemistry, Lanzhou University.
  • Committee Member (10/2023 – present) at Union of Returning Overseas, Chengguan District, Lanzhou City.
  • Member of the 7th Executive Committee (06/2021 – present) at Union of Returning Overseas, Lanzhou University.
  • Contract Consultant (06/2016 – 06/2018) at BioAmber Inc., Montréal, Canada.
  • Teaching Assistant (09/2012 – 12/2015) at McGill University.

Research Interests

  • Sustainable chemical processes.
  • Green chemistry.
  • Catalytic transformations in organic synthesis.
  • Photocatalysis and nanomaterials.

Awards

  • IUPAC-Zhejiang NHU International Award for the Advancement in Green Chemistry (Youth Award) (2019)
  • Relève Étoile Louis-Berlinguet (2019)
  • National Award for Outstanding Self-financed Student Abroad (2017)
  • Alex MacInnes Fellowship (2015)

 Publications Top Notes

  1. “Light-Driven Asymmetric Coupling of Aromatic Aldehydes and Aryl Iodides Using a Simple Amine Reductant”
    Green Chem., 2024, accepted.
    Link to Paper.
    Cited by: N/A
  2. “The Enhancement in Toxic Potency of Oxidized Functionalized Polyethylene-Microplastics in Mice Gut and Caco-2 Cells”
    Sci. Total Environ., 2023, 903, 166057.
    Link to Paper.
    Cited by: N/A
  3. “One-pot Synthesis of Toluene from Methane and Methanol Catalyzed by GaN Nanowire”
    Nano Res., 2023, 16, 6512-6516.
    Link to Paper.
    Cited by: N/A
  4. “The Exploration of Deoxygenation Reactions for Alcohols and Derivatives Using Earth-Abundant Reagents”
    Pure Appl. Chem., 2021, 93, 799-810.
    Link to Paper.
    Cited by: N/A
  5. “Group-III Nitrides Catalyzed Transformations of Organic Molecules”
    Chem, 2021, 7, 64-92.
    Link to Paper.
    Cited by: N/A