Publications by authors named "T N Guru Row"

Embedding nanoparticles with different functionalities into soft substrates is a convenient tool to realize technologically significant multifunctional materials. This study focuses on incorporating bimetallic plasmonic nanoparticles into soft crystals made of cetyltrimethylammonium bromide-iodide. We observed the emergence of a novel symmetry-lowered cetrimonium crystal polymorph that enables the realization of strong interparticle plasmonic coupling in these composite materials.

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The work carried out by our research group over the last couple of decades in the context of quantitative crystal engineering involves the analysis of intermolecular interactions such as carbon (tetrel) bonding, pnicogen bonding, chalcogen bonding, and halogen bonding using experimental charge density methodology is reviewed. The focus is to extract electron density distribution in the intermolecular space and to obtain guidelines to evaluate the strength and directionality of such interactions towards the design of molecular crystals with desired properties. Following the early studies on halogen bonding interactions, several "sigma-hole" interaction types with similar electrostatic origins have been explored in recent times for their strength, origin, and structural consequences.

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β-Alaninium oxalate hemihydrate, glycinium oxalate, and L-leucinium oxalate salt-cocrystals as non-porous self-assembled hydrogen-bonded organic frameworks afforded proton conductivity of 2.43 × 10 S cm (60 °C, 95% RH), 3.03 × 10 S cm (60 °C, 95% RH), and 1.

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Article Synopsis
  • Researchers explore a novel type of material called metal titanium niobates (M-Ti-niobate) that can store lithium and sodium ions using both intercalation and alloying processes.
  • This material, formed by exchanging potassium ions in a layered structure, effectively manages significant volume changes (300-400%) without mechanical degradation due to its unique composition and spacious architecture.
  • The findings suggest that M-Ti-niobates could revolutionize battery technology by enabling more efficient and stable battery electrodes that function well across various current densities and many cycles.
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Experimental and theoretical charge density analyses on isomers of mercaptobenzoic acid have been carried out to quantify the hydrogen bonding of the hitherto less explored thiols, to assess the strength of the interactions using the topological features of the electron density. The electron density study offers interesting insights into the nature of the S-H..

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