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. Fereshteh Meshkani – Catalysis – Best Researcher Award

Dr. Fereshteh Meshkani - Catalysis - Best Researcher Award

university of Calgary - Canada

Author Profile 

SCOPUS

ORCID

🎓 Early academic pursuits

Fereshteh Meshkani embarked on her academic journey at persian gulf university, where she earned her b.sc. in chemical engineering with a solid foundation in chemical processes. her passion for catalysis led her to pursue an m.sc. at the university of kashan, focusing on bi-metallic catalysts for methane reforming. continuing her research trajectory, she obtained her ph.d. in chemical engineering, where she specialized in mesoporous nanocrystalline iron oxide catalysts for the high-temperature water gas shift reaction. her academic excellence is reflected in her impressive gpa of 19.75/20, showcasing her deep commitment to research and innovation.

👩‍🔬 Professional endeavors

Dr. Meshkani has built a remarkable career, contributing to academia and industry alike. she is associated with the catalyst and advanced materials research laboratory (camrl) at the university of kashan and holds a position at the nano science and technology institute of the same university. additionally, her expertise extends internationally, as she collaborates with the university of calgary’s department of chemical and petroleum engineering. her roles across these institutions demonstrate her leadership in chemical engineering, particularly in catalyst development and advanced materials.

🔬 Contributions and research focus

Her research interests lie at the forefront of chemical engineering, with a focus on heterogeneous catalysis, nanocatalysis, and porous materials. dr. meshkani has made significant strides in catalytic co and co2 conversion, hydrogen production, and the water gas shift process. she has worked on developing innovative catalysts, Catalysis such as bi-metallic catalysts (ni-pt) and mesoporous nanocrystalline iron oxide catalysts, which have advanced the field of gas processing and reforming reactions. her research aims to enhance efficiency in hydrogen production, syngas generation, and methane reforming, contributing to sustainable energy solutions.

🏅 Accolades and recognition

Dr. Meshkani's academic and research achievements have not gone unnoticed. her stellar gpa during her ph.d. reflects her dedication, and she has gained recognition within the scientific community for her contributions to catalysis and nanomaterials. she has led several high-impact research projects, enhancing her reputation as Catalysis an authority in nanocatalysis and hydrogen production technologies. her work is not only innovative but also practical, as she has designed and developed laboratory-scale catalytic evaluation setups (cata-test), further solidifying her standing in the field.

🌍 Impact and influence

The impact of dr. meshkani's research extends beyond academia into global efforts for cleaner energy. by focusing on co2 methanation, syngas production, and Catalysis hydrogen production through catalytic processes, she contributes to reducing greenhouse gas emissions and advancing carbon-neutral technologies. her work on co2 conversion is particularly relevant to climate change mitigation efforts, as it provides pathways for utilizing harmful emissions. her influence is seen in both academic advancements and the practical applications of her research in industrial settings.

🧬 Legacy and future contributions

As a dedicated researcher and mentor, dr. meshkani’s legacy is already being shaped by her contributions to the field of catalysis and nanotechnology. she has laid the groundwork for future advancements in energy conversion and catalysis, and her continued involvement in cutting-edge research promises to make significant strides in chemical engineering. her influence as an educator, coupled with her research, ensures that she will inspire the next generation of scientists, pushing the boundaries of innovation in sustainable energy and catalysis.

Notable Publications 

  1. Simultaneous production of highly pure hydrogen and carbon nanofibers through COx-free methane dissociation over Ni-based catalysts: Investigation of the promotional effects of transitional metal (Mn, Zr, and Zn)
    Authors: Bibak, F. and Meshkani, F.
    Journal: Journal of Environmental Chemical Engineering, 2024, 12(5), 113556
  2. Highly pure hydrogen production via the thermocatalytic decomposition of methane over Ni/SiO2.MgO catalysts: Impact of the catalyst's chemical composition
    Authors: Karimi, S., Meshkani, F., Rezaei, M., Rastegarpanah, A.
    Journal: Ceramics International, 2024, 50(19), pp. 36979–36992
  3. The influence of promoters on the catalytic behavior of the Ni/SiO2.MgO catalysts for thermocatalytic decomposition of methane reaction
    Authors: Karimi, S., Meshkani, F., Rezaei, M., Rastegarpanah, A.
    Journal: Fuel, 2024, 372, 131945
  4. CO2 reforming of biodiesel-waste glycerol on nanostructure Ni-SiO2.MgO catalysts for syngas production: Influence of the catalyst chemical composition
    Authors: Pirzadi, Z., Meshkani, F.
    Journal: Energy Conversion and Management, 2024, 315, 118749
  5. Glycerol dry reforming over Ni-based supported on magnesium oxide composites
    Authors: Salehi, R., Meshkani, F.
    Journal: International Journal of Hydrogen Energy, 2024, 78, pp. 279–293