Nmr Techniques In Catalysis

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Overview

This volume provides an overview of the applications of modern solid-state nuclear magnetic resonance (NMR) techniques to the study of catalysts, catalytic processes, species adsorbed on catalysts and systems relevant to heterogeneous catalysis. It characterizes the structure of catalytic materials and surfaces.

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Editorial Reviews

Analyst
...a valuable and unique reference source...highly recommended for those working in the field.
Bulletin of Electrochemistry
...Readers will be impressed by the excellent style of writing by these international experts and the editors are congratulated for their success in bringing out this series, a great piece of work, indeed.
Zeolites
...I can highly recommend this book.
Journal of Catalysis
...recommended reading for all who study catalysis and for all who use solid state NMR spectroscopy.
Booknews
A reference that provides an overview of the applications of modern, solid-state NMR techniques to the study of catalysts, catalytic processes, species adsorbed on catalysts, and systems relevant to heterogeneous catalysis. Seven chapters provide illustrations of the principles of solid-state NMR, with applications to materials of relevance to catalysis, including zeolites and other molecular sieves, oxides, dispersed silica and alumina, supported metal systems, layered materials including clays, zirconium phosphates, metal sulfides and graphite, and to in-situ processes including diffusion and chemical reactions. Annotation c. Book News, Inc., Portland, OR (booknews.com)
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Product Details

  • ISBN-13: 9780824791735
  • Publisher: Taylor & Francis
  • Publication date: 1/1/1994
  • Series: Chemical Industries Series , #55
  • Pages: 448
  • Product dimensions: 6.14 (w) x 9.21 (h) x 1.00 (d)

Table of Contents

Solid-State NMR Studies of Zeolites and Related Systems
• NMR Studies of Molecular Diffusion
• In Situ NMR
• NMR Spectroscopy of Bulk Oxide Catalysts
• NMR Characterization of Silica and Alumina Surfaces
• NMR Layered Materials for Heterogeneous Catalysis
• New NMR Techniques for the Study of Catalysis.

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