Molecular Spectroscopy

Molecular spectroscopy is the study of how molecules interact with electromagnetic radiation, revealing their structures, compositions, and dynamics. When a molecule absorbs or emits radiation, its electrons, bonds, or nuclei undergo transitions between quantized energy levels, producing spectra that serve as distinctive molecular signatures. Chemists use techniques such as infrared, ultraviolet-visible, Raman, and nuclear magnetic resonance spectroscopy to identify compounds, characterize functional groups, monitor reactions, and measure molecular environments. These methods support applications ranging from analytical chemistry and materials research to pharmaceutical development, environmental analysis, and the investigation of molecular structure and reactivity.

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JoVE Core - Analytical Chemistry

IR Spectroscopy: Molecular Vibration Overview

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2024

When Infrared (IR) radiation passes through a covalently bonded molecule, the bonds transition from lower to higher vibrational levels. The fundamental vibrational motions that result in infrared absorption can be classified as stretching or bending vibrations. Stretching vibrations are vibrational motions that occur along the bond line, changing the bond length or distance between two bonded atoms. They are further distinguished as symmetric or asymmetric. In symmetric stretching, the...

Molecular Spectroscopy: Absorption and Emission

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2024

Molecules possess discrete energy levels called quantum states. Unlike atoms, which have simpler energy levels, molecules possess additional rotational and vibrational energy levels. Each energy level is separated by an energy gap, with the gaps between adjacent electronic, vibrational, and rotational levels varying significantly. The three types of energy levels in a diatomic molecule are shown in Figure 1. Figure 1: The three types of energy levels in a diatomic molecule. A molecule can...

UV–Vis Spectroscopy: Molecular Electronic Transitions

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2024

In Ultraviolet–Visible (UV–Vis) spectroscopy, the absorption of electromagnetic radiation is used to probe the electronic structure of molecules. This technique provides insights into molecular electronic transitions, particularly the movement of electrons between different molecular orbitals. Radiation is absorbed if the energy of the electromagnetic radiation passing through the molecule is precisely equal to the energy difference between the excited and ground states. During this process,...

IR Spectroscopy: Hooke's Law Approximation of Molecular Vibration

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2024

A covalently bonded heteronuclear diatomic molecule can be modeled as two vibrating masses connected by a spring. The vibrational frequency of the bond can be expressed using an equation derived from Hooke's law, which describes how the force applied to stretch or compress a spring is proportional to the displacement of the spring. In this case, the atoms behave like masses, and the bond acts like a spring. According to Hooke's law, the vibrational frequency is directly proportional to the...

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Infrared Spectroscopy

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2023

Source: Vy M. Dong and Zhiwei Chen, Department of Chemistry, University of California, Irvine, CA This experiment will demonstrate the use of infrared (IR) spectroscopy (also known as vibrational spectroscopy) to elucidate the identity of an unknown compound by identifying the functional group(s) present. IR spectra will be obtained on an IR spectrometer using the attenuated total reflection (ATR) sampling technique with a neat sample of the unknown.

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