Prof. Hari Babu Bollikolla – chemistry – Best Researcher Award

Prof. Hari Babu Bollikolla - chemistry - Best Researcher Award

Acharya Nagarjuna University - India

Author Profile 

ORCID 

SCOPUS 

🎓 Early academic pursuits

Dr. Hari Babu Bollikolla began his academic journey in andhra pradesh, india, demonstrating exceptional commitment from a young age. after securing 76% in ssc in 1993, he advanced with 81.2% in his intermediate studies specializing in mpc. he pursued a b.sc. degree in mpc, completing it in 1999 with 67.4%, followed by an m.sc. in organic chemistry in 2001. his research-oriented mindset led him to complete a ph.d. in physical sciences from acharya nagarjuna university in 2006. showcasing a multidimensional approach, he also earned an mba in hr & finance in 2011. his strong foundational knowledge in both science and management shaped his academic outlook and future contributions.

👨‍🏫 Professional endeavors

Dr. Bollikolla’s academic career spans over two decades, rooted in acharya nagarjuna university. he started as a lecturer in triveni degree college (2001-2003) and grew steadily through group-b faculty to assistant professor in 2006. he was promoted to associate professor in 2018 and became a full professor in 2021. currently, he serves as the registrar of andhra kesari university and continues to contribute as a professor in the department of chemistry at anu. he has held key roles such as dean of the faculty of sciences, head of departments, and convener of state-level entrance exams, reflecting his dynamic administrative capabilities and commitment to higher education.

🧪 Contributions and research focus

Dr. Bollikolla’s research portfolio spans a wide array of synthetic chemistry themes, including anticancer agents, heterocyclic flavonoids, and nutraceuticals. his ph.d. thesis explored the chemistry conformational analysis of 2-aryl-trans-decahydroquinolin-4-ols using kinetics and proton nmr spectroscopy. with 36 ph.d. and 11 m.phil scholars guided under his supervision, he has fostered a strong research culture. he has completed and managed multiple research projects funded by prestigious agencies like serb, ugc, csir, dst-fist, and even international institutions like king saud university and university malaysia sabah. his notable projects involve synthesis of polyhydroxy flavonoids, benzylimidazolyl carbamates, and cutting-edge computational work on hiv-integrase inhibitors—pioneering applications often integrated with power electronics in advanced drug modeling systems.

🌍 Impact and influence

Dr. Bollikolla’s work has had a notable impact across academia and the pharmaceutical research sector. by blending traditional synthetic methodologies with advanced catalysis and molecular chemistry modeling, he has positioned his research at the intersection of theoretical and applied sciences. his collaborations span both national and international borders, including multiple memoranda of understanding (mou) with research labs and industries. these partnerships have led to innovations in anticancer drug discovery and nutraceutical development—domains increasingly empowered by computational simulations often enhanced by power electronics for lab automation and data acquisition.

📈 Academic citations and digital presence

Dr. Bollikolla maintains a strong presence in the academic world through his digital identifiers. his orcid (0000-0003-1308-391x), scopus (24070474800), and web of science researcher id (n-7076-2018) reflect his wide-reaching contributions. his citation impact is reflected through numerous peer-reviewed publications, with increasing relevance in interdisciplinary studies that align chemistry chemistry, computational biology, and device-aided spectroscopy—areas where power electronics aids precision and efficiency in experimental chemistry.

🏛️ Legacy and future contributions

As registrar and senior academician, dr. bollikolla continues to mentor the next generation of chemists and researchers. his leadership at andhra kesari university and acharya nagarjuna university sets the tone for curriculum innovation, research excellence, and institutional development. his future endeavors are likely to deepen transdisciplinary research, particularly integrating chemical synthesis with data-driven, sensor-based lab frameworks. these systems, when harmonized with power electronics, promise to revolutionize modern chemistry labs, making them more responsive, automated, and accurate.

Notable Publications 

  • Title: An efficient Cu catalyzed regioselective ortho-nitration approach for the synthesis of 2-nitroarylcyanamides: Molecular docking and ADME studies
    Author(s): Boddapati, S. N. Murthy; Tamminana, Ramana; Senapathi, Hari Jyothi; Kola, A. Emmanuel; Ansari, Siddique Akber; Kapavarapu, Ravi Kumar; Bollikolla, Hari Babu; Jonnalagadda, Sreekantha Babu
    Journal: Journal of Molecular Structure

  • Title: (±)-10-Camphorsulfonic acid catalyzed effective synthesis of α,β-unsaturated β-aminoketones from enaminone
    Author(s): Hari Babu Bollikolla; V. B. R. Krishnan Kambhampati; Srihari Chennuboyina; Baby Ramana Mutchu
    Journal: Monatshefte für Chemie - Chemical Monthly

  • Title: Zn(OAc)₂•2H₂O-Catalyzed Betti Base Synthesis under Solvent-free Conditions
    Author(s): M. Mujahid Alam; Hari B. Bollikolla; Ravi Varala
    Journal: Letters in Organic Chemistry

  • Title: A mini review on emerging targets and approaches for the synthesis of anti-viral compounds: In perspective to COVID-19
    Author(s): Maheswara Rao Gokada; Visweswara Rao Pasupuleti; Hari Babu Bollikolla
    Journal: Mini-Reviews in Medicinal Chemistry

  • Title: Catalyst-free facile and efficient one-pot synthesis of densely functionalized pyrroles and α-amino ketones
    Author(s): Hari Babu Bollikolla
    Journal: Journal of Heterocyclic Chemistry

Dr. Milind Kulkarni – Chemistry – Excellence in Scientific Innovation Award

Dr. Milind Kulkarni - Chemistry - Excellence in Scientific Innovation Award

C-MET, Pune - India 

Author Profile 

SCOPUS 

🌱 Early academic pursuits

Dr. Milind v. Kulkarni began his academic journey with excellence, earning an m.sc. in polymer chemistry from shivaji university, kolhapur, in 1996, securing the first rank. he went on to complete his ph.d. in 2002 from the university of pune, focusing on “conducting polymer based sensors.” his formative years laid a strong foundation in material chemistry, polymers, and their electronic applications, which later extended to interdisciplinary domains including power electronics and smart materials.

👨‍🔬 Professional endeavors

Dr. Kulkarni started his career as a scientist-b at the centre for materials for electronics technology (c-met), pune, under the ministry of electronics and information technology (meity), govt. of india. currently serving as centre head, he has led several pioneering projects. his role spans advanced materials development, applied research, institutional collaborations, and national-level innovation programs. he also serves in academic bodies such as the board of studies of symbiosis international university, fergusson college, d.y. patil university, and mit-wpu. he has also been appointed as adjunct faculty at coep and expert member at technovuus, arai, advancing r&d integration in power electronics and material sciences.

🧪 Contributions and research focus

Dr. Kulkarni's research focuses on the development of active materials for li-ion and na-ion batteries, solid-state and flexible batteries, and next-gen systems like li-s and li-air batteries targeting hybrid electric vehicles. he has engineered polyaniline-based thin, flexible, and cost-effective batteries and developed e-textiles using polyaniline-cnt nanocomposites. his expertise extends to Chemistry inkjet-printed, flexible electronics, and multifunctional nanomaterials for power electronics and biomedical applications. notably, he successfully demonstrated a lead-free x-ray attenuation apron and fabricated polymer nanocomposites for biosensing, including e-nose and e-tongue devices. the cross-application of his work bridges chemical sensing, energy storage, and next-gen power electronics.

🌍 Impact and influence

Dr. Kulkarni’s innovations, including india’s first indigenous low-cost polymer swab for covid-19 diagnostics, have had a significant societal and industrial impact. his active engagement with the automotive sector through arai and technovuus highlights his contribution to applied research in power electronics and energy storage. he is a member of prestigious organizations such as the Chemistry electrochemical society (usa), electrochemical society of india, materials research society of india, and society for polymer science (india). as a fellow of the royal society of chemistry (frsc, london) and maharashtra academy of sciences, his expertise is globally recognized.

📚 Academic cites

Dr. Kulkarni has published over 115 peer-reviewed research papers in reputed international journals. with a google scholar h-index of 36, more than 4322 citations, and i10-index of 85, his scholarly contributions underscore the relevance and quality of his work. he has also presented 130+ conference papers and delivered over 50 invited lectures, reflecting his status as a Chemistry thought leader in nanotechnology and energy materials. his 25+ patents, including those granted in the us, canada, germany, and a pct filing, highlight his innovative capacity.

🎓 Legacy and future contributions

Dr. Kulkarni has mentored 5 ph.d. scholars, with 5 more currently under guidance, in addition to supervising m.phil., m.tech., b.e., and m.sc. students. his dedication to nurturing young researchers ensures the continuity of research excellence in polymer nanocomposites, smart materials, and power electronics. looking ahead, his work promises breakthroughs in bio-integrated sensors, wearable batteries, and sustainable energy solutions, further driving india’s capabilities in strategic materials and green technologies.

Notable Publications 

  • Title: Distorted 2H/1T MoS₂ nanostructures with improved field emission and sodium-ion battery performance
    Author(s): Ujjwala P. Chothe, Priyanka R. Sumbe, Mahendra A. More, Milind V. Kulkarni, Bharat Bhanudas Kale
    Journal: Nanoscale Advances (2025)

  • Title: Self-Standing vanadium oxide pillared carbon microfiber film as an excellent anode for lithium & sodium ion batteries
    Author(s): Sayali B. Kale, Ujjwala P. Chothe, Kaustav Bhattacharjee, Aakira Fujishima, Suresh W. Gosavi
    Journal: Inorganic Chemistry Communications (2024)

  • Title: Imidazolium Functionalized Copolymer Supported Solvate Ionic Liquid Based Gel Polymer Electrolyte for Lithium Ion Batteries
    Author(s): Sahebrao S. More, Rushikesh B. Kale, Poorva J. Ambekar, Milind V. Kulkarni, Bharat Bhanudas Kale
    Journal: ACS Applied Polymer Materials (2024)

  • Title: Interfacial engineering of ZnO–ZnS/rGO nano heterostructures: An efficient photoanode for dye-sensitized solar cell
    Author(s): Ranjit S. Kate, Ratna Chauhan, Ujjwala P. Chothe, Bharat Bhanudas Kale, Sanjay Krishnaji Apte
    Journal: Materials Chemistry and Physics (2024)

  • Title: Microstructure tuned Na₃V₂(PO₄)₃@C electrodes toward ultra-long-life sodium-ion batteries
    Author(s): Ranjit S. Kate, Kaustav Bhattacharjee, Milind V. Kulkarni, Ramesh J. Deokate, Ramchandra S. Kalubarme
    Journal: RSC Advances (2024)

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

Dr. Fares Zouaoui – Analytical chemistry and process engineering – Best Researcher Award 

Dr. Fares Zouaoui - Analytical chemistry and process engineering - Best Researcher Award 

University of Rennes - France 

AUTHOR PROFILE 

ORCID 

EARLY ACADEMIC PURSUITS 📚

Fares Zouaoui began his academic journey at Bejaia University, Algeria, where he earned his Bachelor’s degree in Process Engineering in 2015, followed by a Master’s degree in Chemical Engineering in 2017. During these years, he developed a keen interest in the intersection of chemical engineering and analytical chemistry, particularly focusing on the application of electrochemical processes for environmental analysis. His foundational education set the stage for his deep exploration of electrochemistry, sensor technology, and water treatment processes, paving the way for his advanced research and career.

PROFESSIONAL ENDEAVORS 👨‍🔬

Fares’s professional journey has been marked by his work as a researcher and educator. After completing his PhD in Analytical Chemistry at Claude Bernard Lyon 1 University in France in 2020, where he focused on modeling and optimizing biosensors for environmental analysis, he transitioned to several key roles. From 2022 to 2023, he served as an Assistant Professor and later an Associate Professor at the University of Rennes in France. His professional endeavors have included postdoctoral research at the Commissariat à l’Energie Atomique (CEA) in Grenoble, where he worked on Diamond-Like Carbon (DLC) films as electrochemical electrodes. His academic roles allowed him to mentor students, coordinate research projects, and contribute significantly to the scientific community.

CONTRIBUTIONS AND RESEARCH FOCUS 🔬

Fares Zouaoui’s research focuses primarily on the development and optimization of electrochemical processes for environmental applications. His work includes the design of electrochemical sensors and biosensors, especially using Diamond-Like Carbon (DLC) materials and Molecularly Imprinted Polymers (MIPs). He has also worked extensively on water treatment technologies, Analytical chemistry and process engineering specifically focusing on the combined processes of anodic oxidation and ozonation. His PhD research in modeling and optimization of biosensors and his postdoctoral research have contributed to significant advancements in the fields of electrochemistry, sensor technology, and environmental remediation.

ACCELERATING INNOVATION THROUGH TEACHING AND SUPERVISION 🎓

As an educator, Fares has shared his knowledge and expertise with the next generation of scientists. He has taught courses on electrochemistry, analytical chemistry, and chemical engineering at the University of Rennes. His supervision activities include mentoring Master's students, interns, and PhD candidates, guiding them through their research on topics like electrochemical Analytical chemistry and process engineering processes and water treatment. His role in supervising doctoral research, including co-supervising a thesis on the elimination of refractory pollutants using hybrid processes, reflects his commitment to advancing both research and education in his field.

IMPACT AND INFLUENCE 🌍

Fares’s work has had a significant impact on both academia and industry. His innovative research on electrochemical sensors and water treatment processes has provided practical solutions to environmental challenges, particularly in the areas of pollutant removal and resource management. His contributions to electrochemical biosensors, especially for environmental Analytical chemistry and process engineering monitoring, have been recognized globally. Fares's involvement in international research projects, including collaborations with institutions in Brazil, highlights his global influence in the fields of chemical engineering and environmental sciences.

LEGACY AND FUTURE CONTRIBUTIONS 🌱

Looking forward, Fares Zouaoui is committed to continuing his research and teaching efforts to drive forward the development of sustainable and innovative technologies for environmental protection. His current projects, including his work on PFAS treatment and electrode material development, are aimed at solving some of the most pressing environmental issues. Through his leadership in research projects and educational roles, he is shaping the future of environmental chemical engineering and contributing to a cleaner, more sustainable world.

NOTABLE PUBLICATIONS 

  • Title: Electrochemical sensors based on amorphous carbon electrode: A review
    Author: Fares ZOUAOUI, Gauthier Menassol, Cédric DUCROS, Pascal Mailley, Yohann Thomas
    Journal: Microchemical Journal
    DOI: 10.1016/j.microc.2025.112650
  • Title: Anodic oxidation by electrical power pulses for alachlor degradation
    Author: Fares Zouaoui, Didier Floner, Florence Fourcade
    Journal: Environmental Technology
    DOI: 10.1080/09593330.2024.2389323
  • Title: Assessment of a hybrid process coupling ozonation and anodic oxidation in a monophasic configuration
    Author: Helios Yasmine, Florence Fourcade, Fares Zouaoui, Pierre-François Biard
    Journal: Electrochimica Acta
    DOI: 10.1016/j.electacta.2024.144049
  • Title: New poly(ether-phosphoramide)s sulfides based on green resources as sensitive films for the specific impedimetric detection of nickel ions
    Author: Taha Chabbah, Saber Chatti, Fares Zouaoui, Ibtissem Jlalia, GAIJI HOUDA, Houyem Abderrazak, Hervé Casabianca, Régis Mercier, Steffen Weidner, Abdelhamid Errachid et al.
    Journal: Talanta
    DOI: 10.1016/j.talanta.2022.123550
  • Title: Mathematical Model and Numerical Simulation of Conductometric Biosensor of Urea
    Author: Fares Zouaoui, Nadia Zine, Abdelhamid Errachid, Nicole Jaffrezic-Renault
    Journal: Electroanalysis
    DOI: 10.1002/elan.202100610