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Dive into the research topics where Sachin Rama Chaudhari is active.

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Featured researches published by Sachin Rama Chaudhari.


Organic and Biomolecular Chemistry | 2012

Simple and efficient methods for discrimination of chiral diacids and chiral alpha-methyl amines†

Sachin Rama Chaudhari; N. Suryaprakash

The three-component chiral derivatization protocols have been developed for (1)H, (13)C and (19)F NMR spectroscopic discrimination of chiral diacids by their coordination and self-assembly with optically active (R)-α-methylbenzylamine and 2-formylphenylboronic acid or 3-fluoro-2-formylmethylboronic acid. These protocols yield a mixture of diastereomeric imino-boronate esters which are identified by the well-resolved diastereotopic peaks with significant chemical shift differences ranging up to 0.6 and 2.1 ppm in their corresponding (1)H and (19)F NMR spectra, without any racemization or kinetic resolution, thereby enabling the determination of enantiopurity. A protocol has also been developed for discrimination of chiral alpha-methyl amines, using optically pure trans-1,2-cyclohexanedicarboxylic acid in combination with 2-formylphenylboronic acid or 3-fluoro-2-fluoromethylboronic acid. The proposed strategies have been demonstrated on large number of chiral diacids and chiral alpha-methyl amines.


ChemPhysChem | 2015

J-Edited Pure Shift NMR for the Facile Measurement of (n)J(HH) for Specific Protons

Sachin Rama Chaudhari; N. Suryaprakash

We report a novel 1D J-edited pure shift NMR experiment (J-PSHIFT) that was constructed from a pseudo 2D experiment for the direct measurement of proton-proton scalar couplings. The experiment gives homonuclear broad-band (1)H-decoupled (1)H NMR spectra, which provide a single peak for chemically distinct protons, and only retain the homonuclear-scalar-coupled doublet pattern at the chemical-shift positions of the protons in the coupled network of a specific proton. This permits the direct and unambiguous measurement of the magnitudes of the couplings. The incorporation of a 1D selective correlation spectroscopy (COSY)/ total correlation spectroscopy (TOCSY) block in lieu of the initial selective pulse, results in the exclusive detection of the correlated spectrum of a specific proton.


New Journal of Chemistry | 2013

Ternary ion-pair complexation: a protocol for chiral discrimination and the assignment of absolute configuration of chiral hydroxy acids

Sachin Rama Chaudhari; N. Suryaprakash

The study demonstrates the utility of ternary ion-pair complex formed among BINOL (1,1′-Bi-2-naphthol), a carboxylic acid and an organic base, such as, dimethylpyridine (DMAP), 1,4-diazabicyclo[2.2.2]octane (DABCO), as a versatile chiral solvating agent (CSA) for the enantiodiscrimination of carboxylic acids, measurement of enantiomeric excess (ee) and the assignment of absolute configuration of hydroxy acids. The proposed mechanism of ternary complex has wider application for testing the enantiopurity owing to the fact that the binary mixture using BINOL alone does not serve as a solvating agent for their discrimination. In addition, the developed protocol has an excellent utility for the assignment of the absolute configurations of hydroxy acids.


New Journal of Chemistry | 2014

A versatile ternary ionic complex for chiral discrimination of molecules with diverse functionalities using 1H NMR

Indrani Pal; Sachin Rama Chaudhari; N. Suryaprakash

This study reports a simple, efficient and versatile protocol developed for NMR spectroscopic enantiodiscrimination of molecules containing diverse functional groups, such as amino alcohols, secondary alcohols, cyanohydrins, oxazolidones, diols, thiones and epoxides, using a phosphorous based three component mixture. The simple mixing and shaking of enantiopure 1,1′-binaphthyl-2,2′-diyl hydrogenphosphate (BNPA), 4-(dimethylamino)pyridine (DMAP) and a chiral analyte in the solvent CDCl3 served as a chiral solvating agent and resulted in well dispersed peaks for each enantiomer in the 1H NMR spectrum. Discrimination could be achieved not only for the proton at the chiral centre, but also for multiple proton sites. The devised approach also permitted the precise measurement of the enantiomeric excess (ee).


RSC Advances | 2014

Pure shift NMR approach for fast and accurate extraction of heteronuclear couplings

Sachin Rama Chaudhari; N. Suryaprakash

The direct and accurate determination of heteronuclear ((n)J(HX), X = F-19, P-31) couplings from the one dimensional H-1-NMR spectrum is severely hampered due to the simultaneous presence of large numbers of (n)J(HH). The present study demonstrates the utility of the pure shift NMR approach for spectral simplification, and precise and direct measurement of heteronuclear couplings. As a consequence of refocusing of homonuclear couplings ((n)J(HH)) by the pure shift NMR, only heteronuclear couplings ((n)J(HX)) appear as simple multiplets at the resonance position of each chemically non-equivalent proton, enabling their direct measurement from the 1D-H-1 spectrum. The experiment is demonstrated on a number of molecules containing either F-19 or P-31, where (n)J(HF) and (n)J(HP) could be precisely measured in a straightforward manner. The distinct advantage of the experiment is demonstrated on molecules containing more than one fluorine atom, where most of the available NMR experiments fail or have restricted utility.


Magnetic Resonance in Chemistry | 2015

Chiral discrimination of secondary alcohols and carboxylic acids by NMR spectroscopy.

Indrani Pal; Sachin Rama Chaudhari; N. Suryaprakash

The manuscript reports two novel ternary ion‐pair complexes, which serve as chiral solvating agents, for enantiodiscrimination of secondary alcohols and carboxylic acids. The protocol for discrimination of secondary alcohols is designed by using one equivalent mixture each of enantiopure mandelic acid, 4‐dimethylaminopyridine (DMAP) and a chiral alcohol. For discrimination of carboxylic acids, the ternary complex is obtained by one equivalent mixture each of enantiopure chiral alcohol, DMAP and a carboxylic acid. The designed protocols also permit accurate measurement of enantiomeric composition. Copyright


New Journal of Chemistry | 2014

Facile protocols for the configurational assignment of primary amines and hydroxy acids by NMR

Sachin Rama Chaudhari; N. Suryaprakash

Three-component chiral derivatization protocols are proposed for the assignment of the absolute configurations of chiral primary amines and chiral hydroxy acids using H-1-NMR. The protocols involve simple mixing of the ternary components in CDCl3, followed by stirring for 15 min. The spectra can be recorded directly, without invoking any separation method, unlike many other chiral derivatizing agents. The protocols permit the analysis in less than 15 min, making them convenient and effective for the assignment of the absolute configurations of primary amines and hydroxy acids.


RSC Advances | 2012

A versatile resolving agent for diffusion edited separation of enantiomers, complex mixtures and constitutional isomers

Sachin Rama Chaudhari; Srinivasa; N. Suryaprakash

The study is the first report of the utilization of a crown ether as a new and versatile resolving agent for the diffusion edited separation of enantiomers, complex mixtures and constitutional isomers. As a consequence of different binding affinities of enantiomers of a chiral molecule and individual components of the complex mixtures with the crown ether, the molecules diffuse at different rates. The enhanced separation achieved due to matrix assisted diffusion permitted their separation in the diffusion dimension. The generality and wide utility of the new resolving agent and the methodology are demonstrated on diverse examples, such as an organic chiral molecule, constitutional isomers and complex mixture of molecules possessing different functional groups that possess nearly identical molecular weights.


Chemical Communications | 2014

Quick re-introduction of selective scalar interactions in a pure-shift NMR spectrum

N. Lokesh; Sachin Rama Chaudhari; N. Suryaprakash


Organic and Biomolecular Chemistry | 2014

RES-TOCSY: a simple approach to resolve overlapped H-1 NMR spectra of enantiomers

Lokesh Lokesh; Sachin Rama Chaudhari; N. Suryaprakash

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N. Suryaprakash

Indian Institute of Science

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A. Lakshmipriya

Indian Institute of Science

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Indrani Pal

Indian Institute of Science

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Srinivasa

Indian Institute of Science

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Abhishek Shahi

Indian Institute of Science

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E. Arunan

Indian Institute of Science

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Lokesh Lokesh

Indian Institute of Science

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Lokesh

Indian Institute of Science

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N. Lokesh

Indian Institute of Science

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