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Browsing by Author "Narayan, R."

Browsing by Author "Narayan, R."

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  • Maiti, S.; Curnan, M.T.; Subhalaxmi, S.; Kim, K.W.; Narayan, R.; Hur, J.; Kim, J.K.; Maiti, K. (Small, vol.21(35), 2025: 2505334)
    Abstract Lithium?oxygen (Li?O?) batteries (LOBs) are promising candidates for energy storage, primarily due to their remarkable energy density. Yet, the practical implementation of LOBs is hampered by the large overpotentials ...
  • Maiti, S.; Curnan, M.T.; Kim, K.W.; Subhalaxmi, S.; Hur, J.; Narayan, R.; Maiti, K.; Kim, J.K. (Journal of Materials Chemistry A, vol. 13(38), 2025: 31829-31868)
    Given their potential for exceptional capacity and energy density, lithium-sulfur (Li-S) batteries serve as a viable next-generation energy storage technology. However, practical Li-S battery implementation is impeded by ...
  • Mishra, A.K.; Narayan, R.; Aminabhavi, T.M.; Pradhan, Siddhartha Kumar; Raju, K.V.S.N. (Journal Of Applied Polymer Science, 125, 2012: E67-E75)
    Hyperbranched polyurethane-urea-imide/o-clay-silica (HBPUI/o-clay-silica) hybrid coatings were prepared using organically modified clay (o-clay) in the presence of cetyltrimethylammonium bromide (CTAB) and tributylhexade ...
  • Jena, K.K.; Sahoo, S.; Narayan, R.; Aminabhavi, T.M.; Raju, K.V.S.N. (Polymer International, 60(10), 2011: 1504-1513)
    Thermally resistant and mechanically stable novel hyperbranched waterborne polyurethane-urea/silica hybrid coatings were prepared by using 3-aminopropyltriethoxysilane as a coupling agent with SiO2 as a crosslinker. The ...
  • Maiti, S.; Curnan, M. T.; Almusleh, N.; Subhalaxmi, S.; Shin, D.; Narayan, R.; Maiti, K.; Hur, J. (Advanced Energy Materials, vol.16(13), 2026)
    To design devices with formidable theoretical energy density while employing abundant and inexpensive materials, c (RT Na-S) batteries serve as formidable candidates. However, widespread adaptation of RT Na-S batteries is ...

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