Nisha Amarnath Jonniya | Biotechnology Awards | Women Researcher Award

Dr. Nisha Amarnath Jonniya | Biotechnology Awards | Women Researcher Award

Assistant Professor at National Institute of Technology Andhra Pradesh, India

Dr. Nisha Amarnath Jonniya is a dynamic and accomplished academician and researcher, currently serving as an Assistant Professor in the Department of Biotechnology at NIT Andhra Pradesh. With a profound expertise in computational biophysics and drug discovery, she has built a commendable research career focused on unraveling the conformational dynamics of biomolecules, particularly protein kinases implicated in various diseases. Dr. Jonniya obtained her Ph.D. from IIT Indore, where she investigated molecular modeling and simulation approaches for discovering inhibitors against hypertension-related kinases. Her professional journey spans prestigious institutions, including a current postdoctoral tenure at the University of California, San Diego under NIH funding. Her collaborative projects have addressed critical topics such as dengue virus inhibition and protein kinase regulation in Cushing’s syndrome. With over 30 high-impact publications and significant mentoring experience, Dr. Jonniya continues to contribute meaningfully to the fields of structural biology and computational drug design. Her dedication to translational research, coupled with active involvement in academic development programs and scientific outreach, underscores her commitment to both science and education.

Professional Profile

Education

Dr. Nisha Amarnath Jonniya’s academic journey exemplifies excellence and dedication. She completed her Ph.D. in Computational Biophysics from the Indian Institute of Technology (IIT) Indore, with a stellar CPI of 8.88. Her research, conducted under the guidance of Dr. Parimal Kar, focused on the conformational dynamics of kinases implicated in hypertension and involved molecular modeling and simulations to identify potent inhibitors. Prior to her doctoral studies, she earned an M.Tech in Bioinformatics from Maulana Azad National Institute of Technology (MANIT) Bhopal. Her M.Tech dissertation revolved around the application of support vector machine models for genotype classification in Hepatitis C Virus. Dr. Jonniya laid the foundation of her academic career with a B.Tech in Biotechnology from NIT Raipur, where she graduated with honors and departmental rank I. Her strong academic performance throughout her educational tenure, including top ranks at Kendriya Vidyalaya Kusmunda, reflects her consistent commitment to academic excellence and sets the groundwork for her future in high-impact research and teaching.

Professional Experience

Dr. Nisha Amarnath Jonniya’s professional experience spans prestigious institutions across India and the United States. Currently, she is serving as a Postdoctoral Employee at the University of California, San Diego (UCSD), where she is funded by the NIH to explore how disease-associated mutations affect the structure and function of Protein Kinase A. Under the mentorship of Prof. Susan Taylor, she is applying advanced computational techniques to elucidate allosteric regulations in kinases. Prior to this, Dr. Jonniya worked as a Research Associate at IIT Indore, focusing on antibody redesign and inhibitor identification against the dengue virus using in silico methods under a DST-funded project. She also served as a Lecturer at NIT Raipur from 2010 to 2015, where she taught undergraduate courses in biotechnology. Additionally, she held a teaching assistantship at IIT Indore during her Ph.D. studies. Her professional journey reflects a seamless integration of teaching, mentoring, and advanced research. Across these roles, she has contributed significantly to interdisciplinary biomedical research, mentored budding scientists, and fostered an academic environment conducive to collaborative innovation and scientific inquiry.

Research Interest

Dr. Nisha Amarnath Jonniya’s research interests lie at the intersection of structural biology, computational biophysics, and molecular drug design. Her work focuses on understanding the structural and thermodynamic properties of biomolecular systems, particularly proteins and glycans. She explores conformational dynamics using enhanced sampling molecular dynamics methods, providing insight into protein flexibility and function. A key emphasis of her research is on computational modeling of biomolecular recognition processes, including protein-protein and protein-ligand interactions, which are crucial for elucidating disease mechanisms and identifying therapeutic targets. Her projects have addressed critical biological problems, such as kinase regulation in hypertension and structural alterations in dengue virus proteins. Through structure-based drug discovery approaches, she has contributed to the identification of novel inhibitors and antibody enhancements. Dr. Jonniya’s ability to bridge theoretical modeling with translational biomedical applications underscores her long-term goal to contribute to precision medicine. Her research remains driven by the motivation to harness computational power for decoding complex biological phenomena and translating them into clinically relevant solutions.

Research Skills

Dr. Jonniya possesses a robust and versatile skill set in computational and bioinformatics tools essential for modern biomedical research. She is proficient in programming languages like Python, R, and shell scripting, and has advanced experience with molecular dynamics software such as AMBER and GROMACS. She routinely employs simulation and modeling tools like Schrodinger-Suite, Autodock, AlphaFold, UCSF Chimera, and PyMOL for structure-based drug design and protein analysis. Her skill set also includes visualization tools (VMD), plotting libraries (Matplotlib, Gnuplot), and LaTeX for scientific documentation. She has expertise in techniques such as sequence alignment, molecular docking, phylogenetic analysis, network analysis, virtual screening, and homology modeling. Dr. Jonniya is well-versed in both Windows and Linux operating systems, enhancing her adaptability across computational environments. Her command over enhanced sampling techniques, free energy calculations, and allosteric network mapping uniquely positions her for high-resolution insights into protein dynamics. These technical competencies, combined with a deep understanding of biomolecular interactions, empower her to lead impactful projects in structural biology and rational drug discovery.

Awards and Honors

Throughout her academic and professional career, Dr. Nisha Amarnath Jonniya has earned several notable accolades. She secured first rank in both her undergraduate (B.Tech in Biotechnology) and postgraduate (M.Tech in Bioinformatics) programs at NIT Raipur and MANIT Bhopal respectively, reflecting her exceptional academic abilities. She qualified the prestigious Graduate Aptitude Test in Engineering (GATE) in 2007 and was a consistent top performer from school through higher education. Dr. Jonniya received the Best Oral Presentation award at IIT Indore’s Symposium on Advances in Biosciences and Bioengineering in 2019. She has delivered invited talks and presented her research at renowned national and international platforms, including the Gordan Research Conference (USA) and Max Planck Institute (Germany). Her scientific contributions have been published in prestigious journals such as PNAS, eLife, and the Journal of Physical Chemistry B. In recognition of her expertise, she has served as a reviewer for reputed journals including ACS Omega and the Journal of Biomolecular Structure and Dynamics. These honors underscore her academic excellence, leadership in research, and ongoing contributions to the scientific community.

Conclusion

Dr. Nisha Amarnath Jonniya represents the epitome of dedication, innovation, and academic brilliance in the field of computational biology. Her multidisciplinary background, encompassing biotechnology, bioinformatics, and biophysics, has enabled her to address pressing biomedical challenges through in silico approaches. From top academic ranks to international collaborations and high-impact publications, her journey reflects a commitment to excellence and a passion for scientific inquiry. As an educator, she has not only taught and mentored students at premier institutions but also organized and participated in numerous scientific workshops and conferences, contributing to knowledge dissemination and capacity building. Her research continues to break new ground in understanding molecular mechanisms of diseases and designing targeted therapeutics. Moving forward, Dr. Jonniya is well-positioned to make transformative contributions to personalized medicine, drug development, and molecular therapeutics. Her career serves as a model for aspiring researchers aiming to blend computational skills with biological insight to tackle complex healthcare problems of the 21st century.

Publications Top Notes

  • Title: Current and novel therapeutic molecules and targets in Alzheimer’s disease
    Authors: A. Kumar, C.M. Nisha, C. Silakari, I. Sharma, K. Anusha, N. Gupta, P. Nair, …
    Year: 2016
    Citations: 191

  • Title: Molecular Docking and In Silico ADMET Study Reveals Acylguanidine 7a as a Potential Inhibitor of β‐Secretase
    Authors: C.M. Nisha, A. Kumar, P. Nair, N. Gupta, C. Silakari, T. Tripathi, A. Kumar
    Year: 2016
    Citations: 166

  • Title: Docking and ADMET prediction of few GSK-3 inhibitors divulges 6-bromoindirubin-3-oxime as a potential inhibitor
    Authors: C.M. Nisha, A. Kumar, A. Vimal, B.M. Bai, D. Pal, A. Kumar
    Year: 2016
    Citations: 119

  • Title: Elucidating biophysical basis of binding of inhibitors to SARS-CoV-2 main protease by using molecular dynamics simulations and free energy calculations
    Authors: M.F. Sk, R. Roy, N.A. Jonniya, S. Poddar, P. Kar
    Year: 2021
    Citations: 86

  • Title: Investigating phosphorylation-induced conformational changes in WNK1 kinase by molecular dynamics simulations
    Authors: N.A. Jonniya, M.F. Sk, P. Kar
    Year: 2019
    Citations: 51

  • Title: Computational investigation of structural dynamics of SARS-CoV-2 methyltransferase-stimulatory factor heterodimer nsp16/nsp10 bound to the cofactor SAM
    Authors: M.F. Sk, N.A. Jonniya, R. Roy, S. Poddar, P. Kar
    Year: 2020
    Citations: 44

  • Title: Identification of potential inhibitors against Epstein–Barr virus nuclear antigen 1 (EBNA1): An insight from docking and molecular dynamic simulations
    Authors: S. Jakhmola, N.A. Jonniya, M.F. Sk, A. Rani, P. Kar, H.C. Jha
    Year: 2021
    Citations: 40

  • Title: Immunoinformatics approach to design multi-epitope-subunit vaccine against bovine ephemeral fever disease
    Authors: S. Pyasi, V. Sharma, K. Dipti, N.A. Jonniya, D. Nayak
    Year: 2021
    Citations: 35*

  • Title: Investigating specificity of the anti-hypertensive inhibitor WNK463 against With-No-Lysine kinase family isoforms via multiscale simulations
    Authors: N.A. Jonniya, P. Kar
    Year: 2020
    Citations: 30

  • Title: Finding potent inhibitors against SARS-CoV-2 main protease through virtual screening, ADMET, and molecular dynamics simulation studies
    Authors: R. Roy, M.F. Sk, N.A. Jonniya, S. Poddar, P. Kar
    Year: 2022
    Citations: 23

Ligang Xu | Emerging Technologies | Best Researcher Award

Prof. Ligang Xu | Emerging Technologies | Best Researcher Award

Professor at Nanjing University of Posts and Telecommunications, China

Dr. Ligang Xu is an accomplished associate professor at the Institute of Advanced Materials (IAM), Nanjing University of Posts and Telecommunications (NJUPT), with a research focus on perovskite solar cells and multifunctional materials. With over a decade of academic and research experience, he has emerged as a key contributor to the advancement of high-efficiency and stable perovskite photovoltaics. Dr. Xu earned his Ph.D. from the University of Chinese Academy of Sciences, where he studied multifunctional surfaces under Prof. Junhui He. His undergraduate degree in Applied Chemistry from the University of Science and Technology Beijing laid the foundation for his later interdisciplinary research. Throughout his career, he has led and collaborated on national-level projects supported by prestigious foundations, including the National Natural Science Foundation of China. His work has been published in internationally renowned journals such as Angewandte Chemie, Advanced Materials, Small, and Energy & Environmental Science. He has been honored with numerous awards for academic excellence and innovation, including the Initiative Postdocs Talents Supporting Program and Jiangsu’s first prize in scientific research. With a growing international reputation, Dr. Xu actively contributes to academic discourse through invited talks, conference presentations, and peer-reviewed publications that emphasize innovation, stability, and sustainability in energy materials.

Professional Profiles

Education

Dr. Ligang Xu’s academic foundation is rooted in chemistry and materials science, areas in which he has developed substantial expertise over the years. He began his academic journey at the University of Science and Technology Beijing, where he earned his Bachelor of Science in Applied Chemistry in 2009. During his undergraduate studies, he developed a strong interest in materials synthesis and characterization, particularly for energy-related applications. Motivated to pursue advanced research, Dr. Xu continued to the University of Chinese Academy of Sciences, where he completed his Ph.D. in 2014 under the supervision of Prof. Junhui He. His doctoral research focused on the development of multifunctional surfaces, exploring their chemical and physical properties in the context of advanced material applications. This experience gave him a strong grounding in surface science, nanotechnology, and functional coatings, which later informed his transition into the field of perovskite solar cells. The rigorous academic environment and research training during his Ph.D. provided him with both theoretical knowledge and hands-on experience in materials engineering. His education has served as a strong launching pad for a career marked by innovation, interdisciplinary collaboration, and a commitment to sustainability and energy efficiency in advanced material systems.

Professional Experience

Dr. Ligang Xu has accumulated extensive professional experience through his ongoing commitment to both academic research and applied science. Since January 2015, he has served as an associate professor at the Institute of Advanced Materials (IAM) at Nanjing University of Posts and Telecommunications (NJUPT), where he contributes to cutting-edge research in photovoltaic technology and materials innovation. In this role, he has been instrumental in guiding graduate research, securing national research funding, and publishing influential scientific papers. From 2016 to 2018, Dr. Xu further deepened his research credentials through postdoctoral training at NJUPT, working under the supervision of Prof. Wei Huang. His postdoctoral work focused on perovskite solar cells, with particular emphasis on improving their efficiency and stability through interface engineering and dynamic modulation. These years were formative in refining his technical acumen and reinforcing his leadership in photovoltaic research. He has since led multiple national-level projects and collaborated with other prominent scientists on topics ranging from lead-free perovskites to soft perovskite-substrate interfaces. His professional journey reflects a blend of academic rigor, project leadership, and sustained contributions to renewable energy technologies, establishing him as a respected figure in China’s materials science community.

Research Interest

Dr. Ligang Xu’s primary research interests lie at the intersection of materials chemistry and renewable energy, with a specific focus on the design and optimization of perovskite solar cells. His work emphasizes improving both the efficiency and long-term stability of these devices through novel strategies such as interface modulation, in situ crystallization control, and compositional engineering. He is particularly fascinated by how dynamic resonance phenomena and surface/interface chemistry influence photovoltaic performance. Dr. Xu also explores the development of lead-free and environmentally friendly perovskite alternatives, aiming to advance the sustainability of next-generation solar technologies. His recent research projects have investigated the role of ionic liquids, antireflective conductive thin films, and gradient heterojunctions in enhancing the optical and electronic properties of perovskites. In addition to photovoltaics, he has a broader interest in functional surfaces and nanostructured materials for energy conversion applications. These interests stem from his multidisciplinary training in applied chemistry and surface engineering, and they continue to evolve through collaboration with leading researchers in materials science. Dr. Xu’s goal is to bridge the gap between fundamental research and practical application, contributing not only to academic knowledge but also to real-world energy solutions through scalable and cost-effective solar cell technologies.

Research Skills

Dr. Ligang Xu possesses a comprehensive and advanced skill set in the synthesis, characterization, and engineering of materials for energy applications, particularly in the domain of perovskite solar cells. His expertise includes solution-based fabrication techniques such as spin-coating, vapor deposition, and in situ crystallization, enabling precise control over film morphology and device architecture. He has significant experience in interface engineering, compositional tuning, and surface modification, which are critical to improving the performance and longevity of perovskite devices. Dr. Xu is adept in using analytical techniques such as scanning electron microscopy (SEM), X-ray diffraction (XRD), UV-Vis spectroscopy, and photoluminescence to characterize material properties and device behavior. In addition, he is proficient in evaluating photovoltaic performance through current-voltage (J-V) measurements, external quantum efficiency (EQE), and impedance spectroscopy. His ability to integrate experimental design with theoretical modeling has enhanced his capacity to identify key mechanisms in materials behavior and device operation. These skills have enabled him to lead complex, multidisciplinary projects funded by prestigious institutions. Beyond the lab, Dr. Xu contributes to scholarly communication through scientific writing, peer review, and conference presentations, demonstrating both technical expertise and a commitment to academic leadership in the renewable energy materials community.

Awards and Honors

Throughout his academic and professional journey, Dr. Ligang Xu has been recognized with numerous awards and honors that reflect his dedication to excellence in research and innovation. In 2014, he received the National Scholarship for Doctoral Students, highlighting his outstanding performance during his Ph.D. studies at the University of Chinese Academy of Sciences. His contributions during postdoctoral research were acknowledged in 2016 when he was selected for the highly competitive Initiative Postdocs Talents Supporting Program, a prestigious national program designed to support promising young researchers in China. In 2020, Dr. Xu was awarded the Jiangsu Provincial Government Scholarship for Study Abroad, which recognizes high-achieving scientists for international collaboration and global academic engagement. That same year, he was honored with the First Outstanding Achievement Award from the Initiative Postdocs Talents Supporting Program, further solidifying his status as a leading figure in photovoltaic research. In 2021, he received the First Prize for Scientific and Technological Research Achievement from Jiangsu Province, one of the highest regional accolades for scientific innovation. These awards underscore not only his technical achievements but also his consistent leadership, creativity, and impact on the field of renewable energy and materials science.

Conclusion

Dr. Ligang Xu represents a new generation of innovative researchers driving the future of sustainable energy through advanced materials science. With a strong academic foundation, dynamic research portfolio, and a string of high-impact publications, he has demonstrated a clear trajectory toward leadership in the field of perovskite photovoltaics. His interdisciplinary expertise in chemistry, surface science, and device engineering enables him to approach complex energy challenges with creativity and scientific rigor. Whether advancing lead-free solar technologies or optimizing interface dynamics for improved device stability, Dr. Xu continues to break new ground in materials research. His contributions are not only evident in laboratory results and academic citations but also in the real-world potential of the technologies he helps develop. Recognized nationally with competitive grants and prestigious awards, and internationally through peer-reviewed journals and invited presentations, he remains committed to excellence, collaboration, and innovation. As global demand for clean and efficient energy solutions intensifies, Dr. Xu’s work stands at the forefront of transforming cutting-edge research into practical applications. His future endeavors promise to further elevate the role of perovskite materials in achieving global sustainability goals and advancing the scientific frontier of renewable energy technologies.

 Publications Top Notes

1. Title: Graphene wrapped porous polyaniline/manganese oxide nanocomposites with enhanced structural stability and conductivity for high-performance symmetric supercapacitor
Authors: Zheng, Chunpeng; Zhu, Yang; Li, Cheng; Xu, Ligang; Huang, Juan
Journal: Polymer Composites
Year: 2025

2. Title: Rational Engineering of Phase-Pure 2D Perovskite Solar Cells
Authors: Guo, Ke; Lv, Wenzhen; Wang, He; Xing, Guichuan Chuan; Wu, Guangbao

3. Title: Preparation and properties of color-changing hydrogel with dual-stimulation response to temperature and pH
Authors: Zheng, Jia; Liu, Yiming; Xu, Ligang; Yao, Lin
Journal: Huagong Jinzhan / Chemical Industry and Engineering Progress
Year: 2024
Citations: 1

4. Title: Enhancing lead-free photovoltaic performance: Minimizing buried surface voids in tin perovskite films through weakly polar solvent pre-treatment strategy
Authors: Yan, Dongdong; Zhang, Han; Gong, Chensi; Chen, Runfeng; Xu, Ligang
Journal: Journal of Energy Chemistry
Year: 2024
Citations: 1