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Stefan Bienz,Laurent Bigler,Thomas Fox,Herbert Meier

Spectroscopic Methods in Organic Chemistry

Spectroscopic Methods in Organic Chemistry

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This reference work provides essential knowledge for the application of modern spectroscopic methods in organic chemistry, with examples and theoretical aspects. It is compulsory reading for every organic chemistry student.

Format: Paperback / softback
Length: 512 pages
Publication date: 07 July 2021
Publisher: Thieme Publishing Group


This comprehensive reference work offers invaluable insights into the application of modern spectroscopic methods in organic chemistry. Each method is thoroughly explained, utilizing practical examples, theoretical foundations, and diverse applications. Here, we delve into the explanation and demonstration of various spectroscopic techniques:
1. UV/Vis Spectroscopy:
UV/Vis spectroscopy is a powerful tool for identifying and characterizing organic compounds. It utilizes the absorption of UV/visible light by molecules, resulting in characteristic spectra that provide information about their electronic structures, molecular weights, and chemical reactivity. By analyzing the wavelengths and intensity of these spectra, scientists can gain insights into the molecular orbitals, bond lengths, and functional groups present in organic compounds.
2. Infrared (IR) and Raman Spectroscopy:
IR and Raman spectroscopy are non-destructive techniques that utilize infrared radiation or Raman scattering to probe the molecular structure and properties of organic compounds. IR spectroscopy provides information about the vibrational modes of molecules, while Raman spectroscopy reveals details about the chemical bonds and vibrations within molecules. These methods are particularly useful for identifying functional groups, analyzing complex molecules, and studying molecular interactions.
3. Nuclear Magnetic Resonance Spectroscopy (NMR):
NMR spectroscopy is a highly sensitive and selective method that utilizes nuclear magnetic fields to probe the structure and dynamics of organic compounds. It provides detailed information about the chemical environment, bond lengths, and chemical shifts of atoms within molecules. NMR spectroscopy is widely used in drug discovery, structural analysis, and identifying complex organic compounds.
4. Mass Spectrometry (MS):
Mass spectrometry is a powerful tool for identifying and quantifying organic compounds based on their mass-to-charge ratio. It utilizes ionization techniques to separate and analyze the molecular ions produced by the fragmentation of organic compounds. MS provides precise information about the molecular weight, isotopic composition, and structural fragments of organic compounds, making it invaluable in various applications, including drug analysis, environmental science, and biochemistry.
This textbook has been a trusted and widely used reference for decades, serving as a vital resource for organic chemistry students. Its comprehensive coverage of spectroscopic methods ensures that students have a solid understanding of these techniques and their applications in the field. As it is a compulsory reading for examinations at all universities, this textbook equips students with the necessary knowledge to excel in their studies and pursue successful careers in organic chemistry.
In conclusion, this comprehensive reference work provides a thorough exploration of modern spectroscopic methods in organic chemistry. By presenting detailed explanations, practical examples, and applications, it empowers students to gain a deep understanding of these techniques and their significance in advancing scientific research and industry. Whether you are a student or a professional in the field, this textbook is an invaluable resource that will enhance your knowledge and expertise in organic chemistry.

Weight: 1220g
Dimension: 198 x 241 x 25 (mm)
ISBN-13: 9783132434080
Edition number: 3. Auflage

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