Publications by authors named "P Vijayan"

Long-range, terrestrial quantum networks require high-brightness single-photon sources emitting in the telecom C-band for maximum transmission rates. For solid-state quantum emitters, the underlying pumping process, i.e.

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Article Synopsis
  • The study focused on enhancing the gelation properties of mung bean protein using microbial transglutaminase (mTGase), which notably increased gel hardness and storage modulus at a high enzyme concentration (2 IU/g) after 3 hours.
  • Scanning electron microscopy revealed a denser, more cross-linked structure formed at this enzyme level, and the treated samples showed a tripled water-holding capacity compared to the control.
  • Additionally, mTGase treatment resulted in improved emulsifying activity, indicated by a more uniform lipid droplet distribution, making it beneficial for developing plant-based seafood products.
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Treatments of -(1-benzo[]imidazol-2-yl)pyrazine-2-carboxamide (HL) and -(benzo[]thiazol-2-yl)pyrazine-2-carboxamide carboxamide ligands (HL) with [Ru(-cymene)Cl] and [Ru(PPh)Cl] precursors afforded the respective Ru(ii) complexes [Ru(L)(-cymene)Cl] (Ru1), [Ru(L)(-cymene)Cl] (Ru2), [Ru(L)(PPh)Cl] (Ru3), and [Ru(L)(PPh)Cl] (Ru4). These complexes were characterized by NMR, FT-IR spectroscopies, mass spectrometry, elemental analyses, and crystal X-ray crystallography for Ru2. The molecular structure of complex Ru2 contains one mono-anionic bidentate bound ligand and display pseudo-octahedral piano stool geometry around the Ru(ii) atom.

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One of the main source of demise during the next ten years will be coronary heart disease and stroke, which are brought on by smoking (nicotine). To identify the percentage (%) of nicotine consumption by electrocatalytic sensor towards nicotine for target-specific prevent stroke, four uninuclear Ni complexes of substituted butanimidamide Schiff base ligands [HL] was prepared. All the complexes were thoroughly analyzed by using several spectroscopic techniques such as CHNS analysis, FT-IR, NMR (H & C) UV-Vis and NMR.

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Imidazoles are a category of azole antifungals that encompass compounds such as ketoconazole, miconazole, esomeprazole, and clotrimazole. In contrast, the triazoles group, which includes fluconazole, voriconazole, and itraconazole, also plays a significant role. The rise of antibiotic resistance in fungal pathogens has evolved into a substantial global public health concern.

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