Total No. of Publications: 14; First author: 12; h-index: 10; i10-index: 10
Average impact factor: 6; Highest impact factor: 15.1
(source: Google Scholar, data retrieved on 12.01.2024)
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- Duarah, R., Aleksic, I., Milivojevic, D., Rameshkumar, S., Nikodinovic‐Runic, J., & Padamati, R. B. (2023). Development of nystatin‐based antifungal, biodegradable polymer composite materials for food packaging via melt processing approach. Journal of Applied Polymer Science, 140(45), e54663.(Impact Factor: 3.0)
- Duarah, R., & Karak, N. (2019). Hyperbranched polyurethane/reduced carbon dot-zinc oxide nanocomposite-mediated solar-assisted photocatalytic degradation of organic contaminant: An approach towards environmental remediation. Chemical Engineering Journal, 370, 716-728.(Impact Factor: 15.1)
- Duarah, R., Singh, Y. P., Gupta, P., Mandal, B. B., & Karak, N. (2016). High performance bio-based hyperbranched polyurethane/carbon dot-silver nanocomposite: a rapid self-expandable stent. Biofabrication, 8(4), 045013.(Impact Factor: 11.06)
- Das, M. R., Hussain, N., Duarah, R., Sharma, N., Sarmah, P., Thakur, A., ... & Boukherroub, R. (2022). Metal nanoparticles decorated two-dimensional nanosheets as heterogeneous catalysts for coupling reactions. Catalysis Reviews, 1-73.(Impact Factor: 13.6)
- Devi, M., Das, P., Boruah, P. K., Deka, M. J., Duarah, R., Gogoi, A., ... & Das, M. R. (2021). Fluorescent graphitic carbon nitride and graphene oxide quantum dots as efficient nanozymes: Colorimetric detection of fluoride ion in water by graphitic carbon nitride quantum dots. Journal of Environmental Chemical Engineering, 9(1), 104803.(Impact Factor: 7.7 )
- Duarah, R., Deka, A., & Karak, N. (2020). Multifaceted bioinspired hyperbranched polyurethane nanocomposite as a non-contact triggered self-healing material. Express Polymer Letters, 14(6), 542-555.(Impact Factor: 3.952)
- Duarah, R., & Karak, N. (2019). Hyperbranched polyurethane/palladium-reduced carbon dot nanocomposite: an efficient and reusable mesoporous catalyst for visible-light-driven C–C coupling reactions. Industrial & Engineering Chemistry Research, 58(36), 16307-16319.(Impact Factor: 4.326)
- Duarah, R., Singh, Y. P., Gupta, P., Mandal, B. B., & Karak, N. (2018). Smart self-tightening surgical suture from a tough bio-based hyperbranched polyurethane/reduced carbon dot nanocomposite. Biomedical Materials, 13(4), 045004.(Impact Factor: 4) [Also published as a newsletter titled ‘A self-tightening suture’ in Physics World, IOP Publishing]
- Duarah, R., & Karak, N. (2018). High performing smart hyperbranched polyurethane nanocomposites with efficient self-healing, self-cleaning and photocatalytic attributes. New Journal of Chemistry, 42(3), 2167-2179.(Impact Factor: 3.925)
- Duarah, R., & Karak, N. (2017). Facile and ultrafast green approach to synthesize biobased luminescent reduced carbon nanodot: an efficient photocatalyst. ACS Sustainable Chemistry & Engineering, 5(10), 9454-9466.(Impact Factor: 8.4)
- Baruah, P., Duarah, R., & Karak, N. (2016). Tannic acid-based tough hyperbranched epoxy thermoset as an advanced environmentally sustainable high-performing material. Iranian Polymer Journal, 25, 849-861.(Impact Factor: 3.1)
- Duarah, R., Singh, Y. P., Mandal, B. B., & Karak, N. (2016). Sustainable starch modified polyol based tough, biocompatible, hyperbranched polyurethane with a shape memory attribute. New Journal of Chemistry, 40(6), 5152-5163.(Impact Factor: 3.3)
- Duarah, R., & Karak, N. (2015). A starch based sustainable tough hyperbranched epoxy thermoset. RSC Advances, 5(79), 64456-64465.(Impact Factor: 4.0)
- Gogoi, S. R., Saikia, G., Ahmed, K., Duarah, R., & Islam, N. S. (2017). Niobium (V) peroxo α-amino acid complexes: Synthesis, stability and kinetics of inhibition of acid phosphatase activity. Polyhedron, 121, 142-154.(Impact Factor: 2.6)
Book Chapters:
- Duarah, R., Das, P., Boruah, P. K., & Das, M. R. (2022). Current Perspective on the Development of 2D Nanosheets and their Composites for Photocatalytic Degradation of Organic Pollutants. Heterogeneous Nanocatalysis for Energy and Environmental Sustainability, 2, 95-115.
- Duarah, R., Hazarika, D., Saikia, A., Bayan, R., Ghosh, T., & Karak, N. (2019). Sustainable Polymeric Nanocomposites for Multifaceted Advanced Applications. Advances in Sustainable Polymers: Processing and Applications, 363-395.