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Model Systems in Catalysis - Single Crystals to Supported Enzyme Mimics (Paperback, 2010 ed.) Loot Price: R4,080
Discovery Miles 40 800
Model Systems in Catalysis - Single Crystals to Supported Enzyme Mimics (Paperback, 2010 ed.): Robert Rioux

Model Systems in Catalysis - Single Crystals to Supported Enzyme Mimics (Paperback, 2010 ed.)

Robert Rioux

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Loot Price R4,080 Discovery Miles 40 800 | Repayment Terms: R382 pm x 12*

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This book is an excellent compilation of cutting-edge research in heterogeneous catalysis and related disciplines - surface science, organometallic catalysis, and enzymatic catalysis. In 23 chapters by noted experts, the volume demonstrates varied approaches using model systems and their successes in understanding aspects of heterogeneous catalysis, both metal- and metal oxide-based catalysis in extended single crystal and nanostructured catalytic materials. To truly appreciate the astounding advances of modern heterogeneous catalysis, let us first consider the subject from a historical perspective. Heterogeneous catalysis had its beginnings in England and France with the work of scientists such as Humphrey Davy (1778-1829), Michael Faraday (1791-1867), and Paul Sabatier (1854-1941). Sabatier postulated that surface compounds, si- lar to those familiar in bulk to chemists, were the intermediate species leading to catalytic products. Sabatier proposed, for example, that NiH moieties on a Ni sur- 2 face were able to hydrogenate ethylene, whereas NiH was not. In the USA, Irving Langmuir concluded just the opposite, namely, that chemisorbed surface species are chemically bound to surfaces and are unlike known molecules. These chemisorbed species were the active participants in catalysis. The equilibrium between gas-phase molecules and adsorbed chemisorbed species (yielding an adsorption isotherm) produced a monolayer by simple site-filling kinetics.

General

Imprint: Springer-Verlag New York
Country of origin: United States
Release date: September 2014
First published: 2010
Editors: Robert Rioux
Dimensions: 235 x 155 x 28mm (L x W x T)
Format: Paperback
Pages: 526
Edition: 2010 ed.
ISBN-13: 978-1-4614-9739-4
Categories: Books > Professional & Technical > Technology: general issues > Nanotechnology
Books > Science & Mathematics > Chemistry > Inorganic chemistry > General
Books > Science & Mathematics > Chemistry > Organic chemistry > General
Books > Science & Mathematics > Chemistry > Physical chemistry > Catalysis
Books > Professional & Technical > Mechanical engineering & materials > Materials science > General
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LSN: 1-4614-9739-6
Barcode: 9781461497394

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