For Further Information Please Contact

Regional centers:

Chennai: 24437243/24437109
Kolkata: 033-23292381
Jalandhar: 0181-2651306
Kanpur: 0512- 2986936
Ahmedabad: 079-25840352
E-mail: chord@clri.res.in

Nuclear Magnetic Resonance (NMR) Spectroscopy Analyst

Target Group

Masters in Science/ technology will be preferred.

Training Structure

The course will be conducted for 1 month. The training programme aligns with the level 4 of the NSQF and the Qualification Code is CLRI/TPNMR/Q11.

Training Cost

The training fee for the course will be Rs.15,000/-.

Placement

The candidates who successfully complete the training are likely to become startup entrepreneurs.

Course will be conducted at: Chennai.

S.No Course Content
1. Introduction a) NMR Methodology, Hardware and Protocols, 1D NMR Spectroscopy and Polarization transfer methods in NMR.
2. Demonstration of NMR hardware
a) NMR magnets, Probes and other accessories, Sample preparation protocols, Tuning and matching of probe, Lock & Shim, acquisition and processing of NMR spectra, Identification of functional groups via chemical shift and calculation of J-coupling by 1D 1H and 13C NMR, Multi-nuclear INEPT, DEPT experiments and Homo and Heteronuclear.
3. Spectral editing methods in NMR
a) Spectral editing methods in NMR, Homonuclear correlations (bond) by 2D NMR and Heteronuclear correlations (bond) by 2D NMR.
4. Demonstration
a) 31P, 19F, 29Si and 15N NMR, Demonstration/Interpretation of COSY, DQF-COSY and TOCSY, Demonstration/Interpretation of HECTOR, HMQC, HSQC and INADEQUATE.
5. Lectures a) Homonuclear correlations (space) by 2D NMR, Advanced NMR approaches for Biomolecules.
6. Demonstration
a) Demonstration/Interpretation of NOESY and ROESY, Demonstration/Interpretation of STD NMR, Chemical Exchange, Spin-relaxation (T1 and T2) for monitoring binding and dynamics, Demonstration/Interpretation of self-diffusion for the size estimation of protein-ligand complexes.
7. Lectures
a) Fundamentals of Self-diffusion and Micro imaging, Basics of solid-state NMR.
8. Demonstration
a) Demonstration/Interpretation of self-diffusion, and basic solid state NMR experiments.
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