Artem Bezrukov | Chemistry | Best Researcher Award

Dr. Artem Bezrukov | Chemistry | Best Researcher Award

Associate Professor at Kazan National Research Technological Universirty, Russia

Dr. Artem N. Bezrukov is a distinguished researcher in microfluidics and lab-on-chip technologies, specializing in the synthesis and modification of smart soft materials. As an Associate Professor at Kazan National Research Technological University (KNRTU), he has made significant contributions to the development of novel materials based on liquid crystals, quantum dots, polymers, and colloids. His expertise spans both fundamental and applied research, focusing on micro-scale material behavior and its applications in advanced technological solutions. With a strong international presence, Dr. Bezrukov has collaborated with global institutions, contributing to academic and industrial advancements in material science. His dedication to education, research, and international cooperation has established him as a key figure in the field, actively shaping the future of smart materials and nanotechnology.

Professional Profile

Education

Dr. Bezrukov holds a Ph.D. in Chemistry from Kazan State Technological University (2010), where he conducted pioneering research in the field of physical and colloid chemistry. His academic journey began with a Specialist degree in Chemical Engineering (2006) from the same institution, equipping him with a solid foundation in materials science and process engineering. In addition to his scientific studies, he earned a qualification as a Translator & Interpreter for Professional Communication (2005), demonstrating his interdisciplinary skill set. His continuous pursuit of knowledge led him to international academic programs, including a Fulbright scholarship and a short-term postdoctoral fellowship in microfluidics at Carnegie Mellon University in 2019. These experiences have contributed to his expertise in interdisciplinary research, enabling him to bridge the gap between chemistry, engineering, and applied nanotechnology.

Professional Experience

Since 2011, Dr. Bezrukov has served as an Associate Professor at the Department of Physical and Colloid Chemistry at KNRTU, where he has played a pivotal role in research and academic development. From 2012 to 2018, he also held the position of Head of the Protocol Office in the International Affairs department, strengthening global academic collaborations for his university. Prior to that, he worked as a Teaching Assistant, gaining experience in mentoring students and advancing research in material sciences. His career has been marked by his ability to integrate research with practical applications, as seen in his contributions to various funded projects, curriculum development, and international research initiatives. His professional trajectory reflects his dedication to both academic excellence and the advancement of innovative scientific research on an international scale.

Research Interests

Dr. Bezrukov’s research is centered on microfluidics and lab-on-chip technologies, with a particular focus on the synthesis and manipulation of smart soft materials. His work explores the unique properties of liquid crystals, quantum dots, polymers, and colloids, seeking to develop advanced materials for use in biomedical, optical, and nanotechnological applications. By integrating microfluidic techniques with material science, he investigates novel approaches to controlling material properties at the microscale. His research is inherently interdisciplinary, combining chemistry, physics, and engineering to create innovative solutions with broad technological applications. Through his work, he aims to bridge the gap between fundamental scientific research and real-world applications, contributing to the development of next-generation functional materials.

Awards and Honors

Dr. Bezrukov has received multiple accolades in recognition of his outstanding contributions to research and education. He was awarded the prestigious Fulbright Scholarship in 2012, which enabled him to engage in international research collaborations. His work has been further recognized through a short-term postdoctoral scholarship at Carnegie Mellon University in 2019, highlighting his expertise in microfluidics. In addition, he has been the recipient of Potanin Foundation grants (2018-2024) for his contributions to developing innovative educational modules. His participation in Erasmus+ Capacity Building and Jean Monnet projects (2019-2022) demonstrates his commitment to international academic cooperation. With over 30 peer-reviewed journal articles and more than 70 total publications, his contributions have earned him recognition as a leading researcher in the field. His accolades reflect his dedication to advancing science and education on a global scale.

Conclusion

Dr. Artem N. Bezrukov is a strong candidate for the Best Researcher Award due to his contributions to microfluidics, international collaborations, and publication record. However, further emphasis on research impact, citations, leadership in major grants, and industry applications could solidify his candidacy. If these aspects are well-documented, he stands as an excellent contender for the award.

Publications Top Noted

Title: Internationalizing engineering education: A language learning approach

Author(s): A. Bezrukov, J. Ziyatdinova

Year : 2014

Citations: 38

Title: Global challenges and problems of Russian engineering education modernization

Author(s) : J.N. Ziyatdinova, P.N. Osipov, A.N. Bezrukov

Year : 2015

Citations: 28

Title: Development of a networking model for internationalization of engineering universities and its implementation for the Russia-Vietnam partnership

Author(s) : J. Ziyatdinova, A. Bezrukov, A. Sukhristina, P.A. Sanger

Year : 2016

Citations: 26

Title: Inbound international faculty mobility programs in Russia: Best practices

Author(s) : A. Bezrukov, J. Ziyatdinova, P. Sanger, V.G. Ivanov, N. Zoltareva

Year : 2018

Citations: 25

Title:

Best practices of engineering education internationalization in a Russian Top-20 university

Author(s) : J. Ziyatdinova, A. Bezrukov, P.A. Sanger, P. Osipov

Year : 2016

Citations: 24

Title: Development of a β€œsmart materials” master’s degree module for chemical engineering students

Author(s) : A. Bezrukov, D. Sultanova

Year : 2020

Citations: 23

Title: Going globally as a Russian engineering university

Author(s) : J. Ziyatdinova, A. Bezrukov, P. Osipov, P.A. Sanger, V.G. Ivanov

Year : 2015

Citations: 22

Title: Flexible learning model for computer-aided technical translation

Author: A. Bezrukov

Year : 2013

Citations: 22

Title: Application of microfluidic tools for training chemical engineers

Author(s) : A. Bezrukov, D. Sultanova

Year : 2020

Citations: 18

Title: International approaches to the development of cross-cultural education at high school

Author(s) : M. Panteleeva, P.A. Sanger, A. Bezrukov

Year : 2016

Citations: 17

Title: Academic writing in the historical and linguistic context: An example of German language

Author(s) : F.F. Nasibullina, A.N. Bezrukov

Year : 2015

Citations: 9

Title:  Effect of the length of surfactant hydrocarbon radicals on the association of cationic polyelectrolytes with alkyl sulfates in water-alcohol solutions

Author(s) : S.V. Shilova, A.N. Bezrukov, A.Y. Tret’yakova, M.A. Voronin, L.Y. Zakharova, …

Year : 2012

Citations: 9

Title:  Effect of molecular weight of poly-N-benzyl-N,N-dimethyl-N-methacryloyloxyethylammonium chloride on its complexation with sodium dodecyl sulfate

Author(s) : S.V. Shilova, A.Y. Tret’yakova, A.N. Bezrukov, V.A. Myagchenkov, …

Year : 2007

Citations: 9

Title:  Orientation behavior of nematic liquid crystals at flow-wall interfaces in microfluidic channels

Author(s) : A. Bezrukov, Y. Galyametdinov

Year : 2023

Citations: 7

Title: On-chip control over polyelectrolyte–surfactant complexation in nonequilibrium microfluidic confinement

Author(s) : A. Bezrukov, Y. Galyametdinov

Year : 2022

Citations:  7

Title: Control of the phase formation process in solutions of anionic polyelectrolyteβ€”cationic surfactant complexes in a microfluidic channel

Author(s) : A.N. Bezrukov, Y.G. Galyametdinov

Year : 2020

Citations: 7

Title:  Internationalization of engineering education

Author(s) : J.N. Ziyatdinova, A.N. Bezrukov

Year : 2015

Citations: 7

Title: Association of sodium dodecyl sulfate with a cationic polyelectrolyte in aqueous-ethanol media

Author(s) : S.V. Shilova, A.N. Bezrukov, A.Y. Tret’yakova, V.P. Barabanov

Year : 2014

Citations: 6

Title: Dynamic flow control over optical properties of liquid crystal–quantum dot hybrids in microfluidic devices

Author(s) : A. Bezrukov, Y. Galyametdinov

Year : 2023

Citations: 5

Title: Characterizing properties of polymers and colloids by their reaction-diffusion behavior in microfluidic channels

Author(s) : A. Bezrukov, Y. Galyametdinov

Year : 2021

Citations: 5

 

Xiao-Yu Hu | Organic Chemistry| Best Researcher Award

Xiao-Yu Hu, Organic Chemistry, Best Researcher Award

πŸ‘¨β€πŸ«Xiao-Yu Hu stands as a distinguished academic and researcher in the domain of  Organic Chemistry Holding Ph.D. in Chengdu Institute of Biology . Her professional journey exemplifies dedication and expertise. πŸ“š

🌐 Professional Profiles

Academic Background πŸŽ“

Ph.D. in Pharmaceutical Chemistry  from Chengdu Institute of Biology (CAS) in 2011.Postdoctoral Research (2013-2016):Conducted postdoctoral research with Prof. Leyong Wang.Joined Nanjing University as an Associate Research Professor in 2013.Senior AvH Fellow (2016-2018):Joined University of Duisburg-Essen as a senior AvH Fellow (β€œThe Humboldt Fellowship for Experienced Researcher”) in 2016. Collaborated with Prof. Carsten Schmuck during this fellowship. Current Position (2018 – Present): Appointed as Full Professor of Organic Chemistry at Nanjing University of Aeronautics and Astronautics.

Research Focus and Interests πŸ§ͺπŸ”

Research Area: Specializes in supramolecular self-assembly and functional supramolecular materials. Research Approach: Integrates molecular design and synthesis, molecular recognition, and controllable supramolecular assembly.   Objective: Aims at constructing novel β€œintelligent” supramolecular materials with a focus on functional regulation.

Editorial and Academic Contributions πŸ“πŸ“š

Editorial Positions: Associate Editor of Frontiers in Chemistry

Editorial Board Member of: Chinese Chemical Letters, Green Synthesis & Catalysis, Molecules

Research Publications:

Authored and coauthored over 100 research publications.Contributions in reputed journals including Nat. Commun., J. Am. Chem. Soc., Angew. Chem. Int. Ed., Acc. Chem. Res., Adv. Sci., CCS Chem., and more.

Grants and Awards πŸ†πŸŒ

Received Grants and Awards Including: National Natural Science Foundation of China., Natural Science Foundation of Jiangsu Province for Outstanding Young Scholar., The Humboldt Fellowship for Experienced Researcher., Science and Technology Award of Jiangsu Province., National New Star Award in Supramolecular Chemistry of Aromatic Macrocycles., Teaching and Research Achievement Award of Jiangsu Province.

Scientific Approach 🎯

Scientific Problem: Controlling Structure and Function in Aggregates: A key scientific challenge in supramolecular self-assembly. Approach: Aromatic Macrocyclic Hosts and Tailor-Made Guest Molecules:Utilizing aromatic macrocyclic hosts. Designing cavity-matched guest molecules.

Achievements πŸ†πŸ”¬

Orthogonal Self-Assembly of Multiple Non-Covalent Interactions: Efficient and controllable construction of supramolecular self-assembly systems. Clarification of the regulation mechanism of different host-guest binding modes on assembly structure. Performance Orthogonal Self-Assembly: Strategy for stimuli-responsive supramolecular assemblies. Functional regulation and performance improvement. Understanding the regulation mechanism of external stimuli on functions. Publication and Recognition:82 Scientific Papers Published: Includes journals such as Nat. Commun., J. Am. Chem. Soc., Angew. Chem. Int. Ed., Acc. Chem. Res. Recognition: Acknowledged through grants, awards, and β€œthe Humboldt Fellowship for Experienced Researcher.”

Future Project: Orthogonal Integration of Non-Covalent Interactions and Performance πŸš€πŸ”

Innovative Strategy: Orthogonal Integration of Non-Covalent Interactions and Performance: Aims to clarify structure-activity relationships from molecular to macroscopic levels.Focus on controllable construction and functional integration of complex assembly systems. Expected Outcomes: Holistic Understanding : Achieve a comprehensive understanding of molecular design, structural assembly, and functional regulation. Controllable Construction: Realize controllable and precise construction of complicated assembly systems. Functional Integration: Integrate functions at various scales for advanced materials.

Significance and Innovation πŸ”¬πŸŒ

Significance: Addresses a critical challenge in supramolecular self-assembly. Advances understanding of structure-activity relationships. Innovation: Proposes a novel strategy for orthogonal integration, promising advancements in controlled assembly and functional integration.

Top Noted Publications by Dr. Xiao-Yu HuπŸ“š: