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Gowra Raghupathy Dillip

Researcher at Indian Institute of Science

Publications -  60
Citations -  1754

Gowra Raghupathy Dillip is an academic researcher from Indian Institute of Science. The author has contributed to research in topics: Phosphor & Photoluminescence. The author has an hindex of 22, co-authored 54 publications receiving 1366 citations. Previous affiliations of Gowra Raghupathy Dillip include Sri Venkateswara University & Yeungnam University.

Papers
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Green synthesis of silver nanoparticles using ocimum leaf extract and their characterization

TL;DR: In this article, a simple and eco-friendly route using leaf broth of Ocimum sanctum as reductant and stabilizer was used to synthesize aqueous silver nanoparticles.
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Oxygen Vacancy-Induced Structural, Optical, and Enhanced Supercapacitive Performance of Zinc Oxide Anchored Graphitic Carbon Nanofiber Hybrid Electrodes

TL;DR: An effective strategy to intrinsically improve the conductivity and supercapacitive performance of the hybrids by inducing oxygen vacancies is demonstrated and is expected to provide new insights into improving the electrochemical properties of various composites/hybrids.
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A study of the luminescence in near UV-pumped red-emitting novel Eu3+-doped Ba3Ca3(PO4)4 phosphors for white light emitting diodes

TL;DR: In this article, a red-emitting Eu3+ doped Ba3Ca3(PO4)4 phosphors in nanodimensions were synthesized via one-step conventional solid state reaction method for first time at high temperature in air atmosphere.
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Absorption and fluorescence studies of Sm3+ ions in lead containing sodium fluoroborate glasses

TL;DR: In this article, the authors applied the Judd-Ofelt theory to the experimental oscillator strengths to evaluate the phenomenological J-O intensity parameters Ωλ (λ=2, 4 and 6).
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Integration of Marigold 3D flower-like Ni-MOF self-assembled on MWCNTs via microwave irradiation for high-performance electrocatalytic alcohol oxidation and oxygen evolution reactions

TL;DR: In this paper, a 3D flower-like Ni-MOF was fabricated on multi-walled carbon nanotubes (MWCNTs) through a highly efficient and rapid microwave synthetic protocol and studied their applicability in electrocatalytic alcohol oxidation reaction and oxygen evolution reaction.