Dr. Gusev Sergey | Nanotechnology | Outstanding Contributions in Academia Award

Dr. Gusev Sergey | Nanotechnology | Outstanding Contributions in Academia Award

IPM RAS | Russia

Author Profile 

ORCID 

Summary

Gusev Sergey, born in nizhniy novgorod, is a senior research associate in the magnetic nanostructures department of ipm ras with a phd in physics. he has a strong academic foundation from n. i. lobachevsky state university and a distinguished career spanning decades in applied physics research. his expertise lies in analytical electron microscopy, nanotechnology, electronic lithography, and metal nanostructures. throughout his career, he has contributed to both experimental and theoretical studies, guided newcomers, and influenced the field of nanostructures through mentorship and impactful research.

Early academic pursuits

Gusev Sergey  in nizhniy novgorod. from an early age, he displayed a keen interest in physics and scientific exploration. he pursued his studies at the faculty of physics of n. i. lobachevsky state university of nizhniy novgorod, where he built a strong foundation in theoretical and experimental physics. during this period, he nurtured his research curiosity, which later shaped his career path. this formative stage reflects the dedication of gusev sergey to mastering the core principles of physics and materials science.

Professional endeavors 

After completing his studies, gusev sergey began his career as a trainee researcher at the iap ras. he advanced to the position of junior research associate  demonstrating his growing expertise. later, he became a research associate at iap ras until  briefly continued at ipm ras , he has served as a senior research associate at the magnetic nanostructures department of ipm ras. his long-standing dedication reflects a lifetime commitment to scientific discovery and development, showcasing gusev sergey as a vital contributor to russian physics research.

Contributions and research focus 

The research interests of gusev sergey include analytical electron microscopy, nanotechnology, electronic lithography, and metal nanostructures. his specialization in the physics of magnetic nanostructures has significantly advanced understanding of nanoscale properties and their potential applications. through extensive studies, he has contributed to both practical and theoretical aspects of material science. his ability to combine experimental approaches with modern technological methods has positioned him as a respected figure in the field of nanotechnology.

Impact and influence

Over the decades, gusev sergey has made a notable impact by contributing to the development of nanoscale techniques that influence diverse applications in physics and engineering. his insights into electron microscopy and lithography continue to guide young researchers, offering direction in advanced nanostructure studies. as a senior research associate, he has also been deeply involved in mentoring and socializing newcomers in the academic environment, ensuring that the next generation benefits from his vast experience.

Academic cites

The academic community frequently recognizes the contributions of gusev sergey through citations and references to his work in analytical electron microscopy and nanostructure research. his consistent presence in research discussions highlights his role in advancing experimental physics. the broad acknowledgment of his studies underscores how his work has shaped ongoing academic conversations within the field of nanotechnology.

Legacy and future contributions

Gusev Sergey’s legacy lies in his long-standing association with the institute of applied physics and institute for physics of microstructures of ras. his continuous research on nanostructures ensures a foundation for future advancements in materials and nanoscience. his commitment to mentoring young physicists and supporting academic newcomers reflects his dedication to sustaining knowledge transfer. looking ahead, his expertise in nanotechnology and electron microscopy promises further contributions to global research in magnetic nanostructures.

Publications

Title: Waveguide-Assisted Magneto-Optical Effects in 1D Garnet/Co/Au Plasmonic Crystals
Author(s): Tatiana Murzina, Andrey Dotsenko, Irina Kolmychek, Vladimir Novikov, Nikita Gusev, Ilya Fedotov, Sergei Gusev
Journal: Photonics, 2025

Title: Pinning of domain walls of garnet films by Co/Au gratings
Author(s): I. A. Kolmychek, V. B. Novikov, A. A. Dotsenko, N. S. Gusev, S. A. Gusev, E. V. Skorokhodov, I. A. Fedotov, T. V. Murzina
Journal: Physical Review B, 2025

Title: Magnetic vortex states manipulation in overlapping ferromagnetic disks
Author(s): D. A. Tatarskiy, A. N. Orlova, E. V. Skorokhodov, I. Yu. Pashenkin, V. L. Mironov, S. A. Gusev
Journal: Journal of Magnetism and Magnetic Materials, 2024

Title: Pinning of domain walls in epitaxial garnet film patterned by surface arrays of ferromagnetic metal particles
Author(s): M. P. Temiryazeva, I. A. Kolmychek, A. G. Temiryazev, V. B. Novikov, A. I. Maydykovskiy, N. S. Gusev, E. V. Skorokhodov, S. A. Gusev, S. A. Nikitov, K. S. Napolskii et al.
Journal: Journal of Magnetism and Magnetic Materials, 2024

Title: Gap solitons in nanoscale YIG magnonic crystals
Author(s): Maria A. Morozova, Oleg V. Matveev, Dmitry V. Romanenko, Vera V. Balaeva, Sergey A. Gusev, Nikita S. Gusev, Sergey A. Nikitov
Journal: Physical Review B, 2024

Conclusion 

Gusev Sergey’s lifelong dedication to physics and nanotechnology reflects a profound commitment to advancing scientific knowledge. his research has significantly impacted the study of magnetic nanostructures and electron microscopy, inspiring future generations of scientists. with a legacy built on innovation, mentorship, and rigorous exploration, he continues to shape the field, ensuring that both his contributions and guidance remain influential for years to come.

Dr. Jhuma Bhadra – Chemical Biology – Best Researcher Award

Dr. Jhuma Bhadra - Chemical Biology - Best Researcher Award

Sarojini Naidu College for Women - India

AUTHOR PROFILE 

ORCID 

EARLY ACADEMIC PURSUITS 🎓

Jhuma Bhadra embarked on her academic journey with a keen interest in chemistry, which eventually led her to earn a Ph.D. in the subject. Her formative years were marked by rigorous academic training, setting a strong foundation in the fundamental and applied aspects of chemistry. Her early studies laid the groundwork for her future research endeavors in nucleolipid synthesis and antimicrobial therapeutics, areas that have profound implications in biomedical sciences.

PROFESSIONAL ENDEAVORS 💼

Jhuma’s professional career commenced with impactful postdoctoral fellowships at prestigious institutions like Boston College and Clemson University. At Boston College, she explored bacteriophage modification using Boron warheads, while her tenure at Clemson University focused on designing and synthesizing aminoglycoside and Hoechst-conjugated phosphorodiamidate morpholino oligomers (PMOs) to study their antibacterial activity. Her academic career progressed as she joined Kurseong College as an Assistant Professor, where she continued to contribute to the field of chemistry. She is currently an Assistant Professor at Sarojini Naidu College for Women, where she furthers her research and teaching responsibilities.

CONTRIBUTIONS AND RESEARCH FOCUS 🤞

Jhuma Bhadra’s research is centered around the synthesis and biomedical application of nucleolipids. Her notable work includes the design of novel aminoglycoside-nucleolipid conjugates aimed at developing potential antimicrobial therapeutics. Her research is not just confined to theoretical aspects but extends to practical applications that have the potential to combat Chemical Biology antibiotic resistance, a critical global health challenge. Her dedication to advancing the field is evident in her role as a supervisor to two Junior Research Fellows, guiding the next generation of researchers.

ACCOLADES AND RECOGNITION 🏆

Jhuma’s scholarly contributions have been recognized by the scientific community, notably through the receipt of a substantial grant from the Science and Engineering Research Board (SERB-DST) under the EMEQ scheme. The Rs. 48.9 lakh funding supports her groundbreaking project on antimicrobial therapeutics, underscoring the importance and potential impact of her work. Chemical Biology This recognition highlights her role as a leading researcher in her field.

IMPACT AND INFLUENCE 🌍

Jhuma Bhadra’s research impacts both the scientific community and broader society. Her work on nucleolipids and antimicrobial therapeutics addresses pressing health issues, contributing to the development of new strategies to combat bacterial infections. By integrating her research findings into her teaching, she influences and inspires her students, fostering a new wave of Chemical Biology scientific inquiry and innovation in chemistry.

LEGACY AND FUTURE CONTRIBUTIONS 💡

Jhuma’s legacy in the field of chemistry is characterized by her innovative approach to research and her commitment to education. As she continues her work at Sarojini Naidu College for Women, her contributions are poised to expand the frontiers of nucleolipid research and antimicrobial therapies. Her future endeavors will likely include further exploration of biomedical applications, continuing to bridge the gap between fundamental research and practical healthcare solutions. Jhuma Bhadra’s dedication ensures her lasting influence in the realm of chemical sciences and beyond.

NOTABLE  PUBLICATIONS 

  • Title: Peptide Nucleic Acids: Recent Advancements and Future Opportunities in Biomedical Applications
    Authors: Achinta Sannigrahi, Nayan De, Debmalya Bhunia, Jhuma Bhadra
    Journal: Bioorganic Chemistry
    DOI: 10.1016/j.bioorg.2025.108146
  • Title: Understanding Antisense Oligonucleotide Efficiency in Inhibiting Prokaryotic Gene Expression
    Authors: Sandra Story, Sayantan Bhaduri, Sudakshina Ganguly, Rambabu Dakarapu, Sarah L. Wicks, Jhuma Bhadra, Simeon Kwange, Dev Arya
    Journal: ACS Infectious Diseases
    DOI: 10.1021/acsinfecdis.3c00645
  • Title: Self-Transfecting GMO-PMO Chimera Targeting Nanog Enable Gene Silencing In Vitro and Suppresses Tumor Growth in 4T1 Allografts in Mouse
    Authors: Ujjal Das, Jayanta Kundu, Pallab Shaw, Chandra Bose, Atanu Ghosh, Shalini Gupta, Sudipta Sarkar, Jhuma Bhadra, Surajit Sinha
    Journal: Molecular Therapy - Nucleic Acids
    DOI: 10.1016/j.omtn.2023.03.011
  • Title: Cananginone Abrogates EMT in Breast Cancer Cells through Hedgehog Signaling
    Authors: Chandra Bose, Ujjal Das, Tapan Kumar Kuilya, Joyanta Mondal, Jhuma Bhadra, Priyanjalee Banerjee, Rajib Kumar Goswami, Surajit Sinha
    Journal: Chemistry & Biodiversity
    DOI: 10.1002/cbdv.202100823
  • Title: Self-Transfecting GMO-PMO and PMO-GMO Chimeras Enable Gene Silencing In Vitro and In Vivo Zebrafish Model and NANOG Inhibition Induce the Apoptosis in Breast and Prostate Cancer Cells
    Authors: Jayanta Kundu, Ujjal Das, Chandra Bose, Jhuma Bhadra, Surajit Sinha
    Journal: Preprint
    DOI: 10.1101/2021.06.04.447039