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Thangavel Mahalingam Vijayakumar

Researcher at SRM University

Publications -  71
Citations -  824

Thangavel Mahalingam Vijayakumar is an academic researcher from SRM University. The author has contributed to research in topics: Chemistry & Medicine. The author has an hindex of 11, co-authored 55 publications receiving 552 citations. Previous affiliations of Thangavel Mahalingam Vijayakumar include Mar Ivanios College.

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Efficient π electrons delocalization in prospective push–pull non-linear optical chromophore 4-[N,N-dimethylamino]-4′-nitro stilbene (DANS): A vibrational spectroscopic study

TL;DR: In this article, the effect of intramolecular charge transfer on the geometries and the vibrational modes contributing to the linear electro-optic effect of the organic NLO material was analyzed.
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Electrochemical analysis of Graphene Oxide/Polyaniline/Polyvinyl alcohol composite nanofibers for supercapacitor applications

TL;DR: In this article, Graphene Oxide/Polyaniline/Polyvinyl alcohol nanofibers were obtained via electrospinning process and demonstrated using X-ray Diffraction (XRD) and Scanning Electron Microscope (SEM).
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Effect of various aqueous electrolytes on the electrochemical performance of α-MnO2 nanorods as electrode materials for supercapacitor application

TL;DR: A facile one-step hydrothermal method to prepare α-MnO2 nanorods for their application as electrode materials for high-quality supercapacitors was reported in this article.
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Electron–phonon coupling and vibrational modes contributing to linear electro‐optic effect of the efficient NLO chromophore 4‐(N,N‐dimethylamino)‐N‐methyl‐4′‐toluene sulfonate (DAST) from their vibrational spectra

TL;DR: In this paper, the spectral properties of the most prospective electro-optic crystal 4-(N,N-dimethylamino)-N-methyl-4′-toluene sulfonate (DAST) have been comprehensively described with the near infrared Fourier transform (NIR FT) Raman and Fourier Transform Infrared (FT-IR) spectra supported by the density functional theoretical (DFT) computations to elucidate the contribution of vibrational modes to the linear electrooptic (LEO) effect.
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NIR-FT Raman and FT-IR spectral investigations of the nonlinear optical chromophorep-bromoacetanilide

TL;DR: In this article, a vibrational spectral analysis of the hydrogen-bonded nonlinear optical (NLO) material p-bromo acetanilide (PBA) was carried out using NIR-FT-Raman and FT-IR spectroscopy.