Raman Spectroscopic Analysis

Raman spectroscopic analysis is a non-destructive method for identifying and characterizing materials by measuring how light scatters from them, making it valuable across physics and related sciences. A laser illuminates the sample, and most photons undergo elastic scattering, while a small fraction experiences inelastic Raman scattering that shifts in frequency according to molecular or crystal lattice vibrations. The resulting spectrum provides a chemical and structural fingerprint, revealing composition, bonding, phase, strain, and other material properties. Applications include studying semiconductors, minerals, nanomaterials, pharmaceuticals, and biological samples, often with minimal preparation and without altering the specimen.

Raman Spectroscopic Analysis - Related Videos

Education

JoVE Science Education - Chemistry

Raman Spectroscopy for Chemical Analysis

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2023

Source: Laboratory of Dr. Ryoichi Ishihara — Delft University of Technology Raman spectroscopy is a technique for analyzing vibrational and other low frequency modes in a system. In chemistry it is used to identify molecules by their Raman fingerprint. In solid-state physics it is used to characterize materials, and more specifically to investigate their crystal structure or crystallinity. Compared to other techniques for investigating the crystal structure (e.g. transmission electron...

Research

JoVE Journal - Chemistry

A Filter-based Surface Enhanced Raman Spectroscopic Assay for Rapid Detection of Chemical Contaminants

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Cited by 8 •

2016

A procedure for fabrication and performing the filter-based surface enhanced Raman spectroscopic (SERS) assay for the detection of chemical contaminants (i.e., pesticide ferbam and antibiotic ampicillin) is presented.

Purification and Reconstitution of TRPV1 for Spectroscopic Analysis

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Cited by 1 •

2018

This article describes specific methods to obtain biochemical quantities of detergent-solubilized TRPV1 for spectroscopic analysis. The combined protocols provide biochemical and biophysical tools that can be adapted to facilitate structural and functional studies for mammalian ion channels in a membrane-controlled environment.

Combining Raman Imaging and Multivariate Analysis to Visualize Lignin, Cellulose, and Hemicellulose in the Plant Cell Wall

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Cited by 14 •

2017

This protocol aims to present a general method to visualize lignin, cellulose, and hemicellulose in plant cell walls using Raman imaging and multivariate analysis.

Fabrication of an Optical Cell Dryer for the Spectroscopic Analysis Cells

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2019

A protocol for fabricating a device for simultaneously drying multiple optical cells is presented.

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