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Environmental Effects on Photoinduced Processes in Organic Molecules

Environmental Effects on Photoinduced Processes in Organic Molecules

Paperback (22 Sep 2011)

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Publisher's Synopsis

The book objective is to explore environment caused changes on internal characteristics of an organic molecule. Hydrogen network of polar solvent molecules and zero point energy have to be taken into consideration for the correct qualitative, quantitative interpretation of intermolecular proton transfer pathways. Anil-type molecules conformational variability in polar solvents is competing with solvent molecules clusters formation. Bacteriorhodopsin dipole moment is defined by cytoplasmic and extracellular coils of the membrane. Cyanine class molecule experiences deformations in solvent surrounding resulting benzoid, chinoid forms. Carotenoids (lutein, zeaxanthin, violaxanthin) have the lowest excited states sensitive to environment. Using quantum mechanics methods there are understood proton transfer, conformers' formations, driving force origin in bacteriorhodopsin and spectral changes in the photosynthetic light-harvesting complexes at high light conditions. The results of the book demonstrate possible influence of the polar environment on the photoinduced processes in organic molecules. The experimental observations are explained what evidently is of the practical importance.

About the Publisher

LAP Lambert Academic Publishing

Since Lambert Academic Publishing's foundation, thousands of top researchers and renowned scientists have embraced its unprecedented approach to free publishing, thereby making it a leader in the book publishing industry today. Research projects, dissertations, diploma theses, master theses and doctoral theses are given unparalleled visibility and global readership. Our catalogue consists of over 40,000 dissertations and theses, which are produced in the form of high-quality paperbacks in the USA, UK and Germany and distributed through an extensive network of major retailers.

Book information

ISBN: 9783846506028
Publisher: KS Omniscriptum Publishing
Imprint: LAP Lambert Academic Publishing
Pub date:
Language: English
Number of pages: 168
Weight: 254g
Height: 229mm
Width: 152mm
Spine width: 10mm