Marina Jovanovic | Sustainable Antimicrobials | Innovative Research Award

Innovative Research Award

Marina Jovanovic – Institute of General and Physical Chemistry, Serbia

Marina Jovanovic
Affiliation Institute of General and Physical Chemistry
Country Serbia
Scopus ID 7202633608
Documents 15
Citations 228
h-index 9
Subject Area Sustainable Antimicrobials
Event International Chemistry Scientist Awards
ORCID 0000-0001-9617-1151

Marina Jovanovic, Institute of General and Physical Chemistry, Serbia, is recognized in this academic profile for research associated with sustainable antimicrobials and chemistry-oriented scientific investigation. Her indexed research record includes 15 documents, 228 citations, and an h-index of 9 according to the supplied Scopus profile information. [1]

Abstract

Marina Jovanovic is affiliated with the Institute of General and Physical Chemistry in Serbia and has a research profile associated with sustainable antimicrobials. The supplied bibliometric information identifies 15 indexed documents, 228 citations, and an h-index of 9. [1] The subject area is relevant to contemporary chemistry research because antimicrobial systems increasingly involve the study of molecular composition, functional materials, chemical interactions, activity mechanisms, and sustainability considerations. Within this context, an Innovative Research Award profile may recognize documented contributions that demonstrate scientific originality, methodological development, and relevance to chemistry-based antimicrobial research. [1]

Keywords

Innovative Research Award, Marina Jovanovic, sustainable antimicrobials, antimicrobial chemistry, sustainable chemistry, Institute of General and Physical Chemistry, Serbia, chemical research, antimicrobial materials, research innovation, scientific impact, chemistry research.

Introduction

Antimicrobial research is an interdisciplinary area in which chemistry plays an important role in the development, characterization, and evaluation of substances and materials with antimicrobial properties. Sustainable approaches additionally consider factors such as resource efficiency, environmental compatibility, material selection, and the potential reduction of undesirable effects throughout a material or chemical system’s life cycle. These considerations have contributed to growing interest in sustainable chemistry-based approaches to antimicrobial technologies.[1] [2]

Research Profile

Jovanovic’s supplied research classification is sustainable antimicrobials, positioning the profile at the intersection of antimicrobial science and sustainability-oriented chemistry. The affiliation with the Institute of General and Physical Chemistry further places the profile within a chemistry-focused institutional environment. The available bibliometric data indicate a measurable body of indexed scholarly output and citation activity. [1]

Research Contributions

The contribution area represented by sustainable antimicrobials is relevant to chemistry because the performance of antimicrobial systems depends on chemical structure, composition, interactions, stability, physicochemical characteristics, and the mechanisms through which antimicrobial activity is produced. Sustainability adds an additional dimension by encouraging consideration of material and process choices beyond antimicrobial efficacy alone. [1]

Publications

The supplied Scopus profile records 15 documents associated with Scopus Author ID 7202633608. [1] Because individual publication titles, journal information, publication years, and DOI identifiers were not supplied with the profile data, this article does not attribute specific papers or DOI records to the researcher without independent bibliographic verification.[1] [2]

Research Impact

The supplied bibliometric indicators report 228 citations and an h-index of 9 across the indexed record. [1] These indicators provide quantitative information about citation activity and indexed scholarly output, but they should be interpreted in relation to field, career stage, publication practices, database coverage, and the date on which the indicators are observed. [3]

Award Suitability

The supplied profile is presented for consideration under the Innovative Research Award at the International Chemistry Scientist Awards. The stated subject area of sustainable antimicrobials is directly connected with chemistry through the study and development of antimicrobial substances and functional materials and through the chemical principles underlying their activity and sustainability characteristics.[3]

Conclusion

Marina Jovanovic’s supplied academic profile is associated with sustainable antimicrobials and the Institute of General and Physical Chemistry in Serbia. The reported Scopus record comprises 15 documents, 228 citations, and an h-index of 9. [1] The subject area has clear relevance to chemistry through the design, characterization, and evaluation of antimicrobial chemical systems and materials, with sustainability providing an additional research dimension.

References

  1. Elsevier. (n.d.). Scopus author details: Marina Jovanovic, Author ID 7202633608. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=7202633608
  2. ORCID. (n.d.). ORCID profile of Marina Jovanovic. ORCID Registry.
    https://orcid.org/0000-0001-9617-1151
  3. Vasić, B., Jovanović, M., Petrović, M., Kiperović, D., Tenji, D., Tomić, N., & Šprajc, P. From Waste to Value: Phenolic Profile, Bioactivity, Functional Potential and Application Perspectives of Portugieser Wine Pomace.
    https://www.mdpi.com/2673-4079/7/3/45

Assist. Prof. Dr. Rajesh Kumar | Chemistry | Excellence in Research Award

Assist. Prof. Dr. Rajesh Kumar | Chemistry | Excellence in Research Award

Assist. Prof. Dr.  Rajesh Kumar | Assistant Professor | Government Degree College Chaubattakhal Pauri Garhwal Uttarakhand India | India

Assist. Prof. Dr. Rajesh Kumar is an Assistant Professor in the Department of Chemistry, Government Degree College, Chaubattakhal, Pauri Garhwal, Uttarakhand, India. He holds a Ph.D. in Chemistry (Nanochemistry) from Kumaun University, Nainital, and has demonstrated exceptional academic excellence throughout his education, qualifying national-level examinations such as CSIR-NET , GATE, and U-SET. His primary research areas include mixed oxide-based nanoparticles for adsorption and photocatalytic applications, water remediation, biofuels, and the biological activities of nanomaterials. Dr. Kumar has published 35 scholarly works (25 research papers and 10 book chapters), contributing significantly to the advancement of nanochemistry and environmental science. His publications have collectively earned 167 citations (158 since 2020) with an h-index of 7 (6 since 2020) and an i10-index of 4, demonstrating sustained research impact and scholarly productivity. He has also filed three published patents focused on nanomaterial-based adsorption and biofuel synthesis methods. A recipient of multiple honors, including Best Oral Presentation Awards  and Young Scientist Awards , Dr. Kumar actively contributes as an editorial board member and reviewer for several international journals. His professional memberships include ISCA, STRA, and TERA. Dr. Kumar’s dedication to teaching, research, and scientific dissemination reflects his commitment to both organizational and personal growth, fostering interdisciplinary collaboration in environmental and material chemistry.

Profile : Google Scholar

Featured Publications :

  1. Tamta, A., Lohiya, G., Kumar, R., Kandpal, A., Chandra, B., Joshi, R., & Kandpal, N. D. (2025). Evaluating the in-vitro antioxidant, anti-inflammatory and anticancer potentials of NiO-cellulose nanocomposites. BioNanoScience, 15, 1–17.

  2. Kumar, R., Ali, S. R., Karmakar, R., Sharma, R., & Haider, N. (2024). Adsorption potential of iron-zirconium oxide nanoparticles for 3-chlorophenol and 3-nitrophenol: Thermodynamic, kinetic and mechanistic studies. Russian Journal of General Chemistry, 94, 1419–1435.

  3. Semwal, N., Mahar, D., Chatti, M., Kumar, R., & Arya, M. C. (2024). Ni-Zn/CeO₂ nanocomposites for enhanced adsorptive removal of 4-chlorophenol. Environmental Science and Pollution Research, 31, 51934–51953.

  4. Vaishali, Sharma, S., Sharma, P., Das, D., Vashistha, V. K., Dhiman, J., Sharma, R., Kumar, R., Singh, M. V., & Kumar, Y. (2024). Magnetic nanoparticle-catalysed synthesis of quinoline derivatives: A green and sustainable method. Heliyon, 10, 1–54.

  5. Kumar, R., Bhoj, G. S., Arya, M. C., Karmakar, R., Sharma, P. K., & Tripathi, V. (2024). Polymer precursor method for the synthesis of zinc oxide nanoparticles: A novel approach. Environmental Conservation Journal, 1–7.