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Spectroscopy and modelling of biomolecular building blocks

Author: Jean-Pierre Schermann
Publisher: Amsterdam ; Boston : Elsevier, 2008.
Edition/Format:   Print book : English : 1st edView all editions and formats
Summary:
"Spectroscopy and Modelling of Biomolecular Building Blocks presents an overview of recent advances in: photon and electron spectroscopy, quantum chemistry, modelling and mass-spectrometry. The integration of these disciplines offers a new point of view to the understanding of isolated elementary building blocks of biomolecules and their assemblies. It allows the unambiguous separation between intrinsic properties  Read more...
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Additional Physical Format: Online version:
Schermann, Jean-Pierre.
Spectroscopy and modelling of biomolecular building blocks.
Amsterdam ; Boston : Elsevier, 2008
(OCoLC)971626004
Document Type: Book
All Authors / Contributors: Jean-Pierre Schermann
ISBN: 9780444527080 0444527087
OCLC Number: 123797914
Description: xvii, 479 pages : illustrations ; 25 cm
Contents: Modelling --
Spectroscopy --
Experimental methods --
Case studies --
From gas-phase to solution.
Responsibility: Jean-Pierre Schermann.

Abstract:

Presents an overview of advances in the intertwining of the following research fields: photon and electron spectroscopy, quantum chemistry, modelling and mass-spectrometry. This book offers a  Read more...

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    schema:reviewBody ""Spectroscopy and Modelling of Biomolecular Building Blocks presents an overview of recent advances in: photon and electron spectroscopy, quantum chemistry, modelling and mass-spectrometry. The integration of these disciplines offers a new point of view to the understanding of isolated elementary building blocks of biomolecules and their assemblies. It allows the unambiguous separation between intrinsic properties of biomolecular systems and those induced by the presence of their environment. The first chapters provide background in modelling (I), frequency resolved spectroscopy using microwave, infrared and UV photons, time-resolved spectroscopy in the femtosecond domain and energy-resolved electron spectroscopy (II) and production of gas-phase neutral and ionic biomolecular species, massspectrometry, ion mobility and BIRD techniques (III). Chapter IV is devoted to case studies of gas-phase experimental investigations coupled to quantum or classical calculations. The topics are structural studies of nucleobases and oligonucleotides, peptides and proteins, sugars; neuromolecules; non-covalent complexes; chiral systems, interactions of low-energy electrons with biomolecules in the radiation chemistry context and very large gas-phase biomolecular systems. Chapter V concerns the link between gas-phase and liquid-phase. Different treatments of solvation are illustrated through examples pointing out the influence of progressive addition of water molecules upon properties of nucleobases, peptides, sugars and neuromolecules."--BOOK JACKET." ;
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