Local Structural Characterisation
Bruce, Duncan W.; O'Hare, Dermot; Walton, Richard I.
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Description for Local Structural Characterisation
In order to underpin novel synthesis strategies both to facilitate typical inorganic materials applications and to encourage new ones, Local Structural Characterisation provides thorough review of current and emerging techniques for materials characterisation. Series: Inorganic Materials Series. Num Pages: 380 pages, illustrations. BIC Classification: TGM. Category: (P) Professional & Vocational. Dimension: 236 x 152 x 23. Weight in Grams: 622.
Inorganic materials are at the heart of many contemporary real-world applications, in electronic devices, drug delivery, bio-inspired materials and energy storage and transport. In order to underpin novel synthesis strategies both to facilitate these applications and to encourage new ones, a thorough review of current and emerging techniques for materials characterisation is needed.
Examining important techniques that allow investigation of the structures of inorganic materials on the local atomic scale, Local Structural Characterisation discusses:
- Solid-State NMR Spectroscopy
- X-Ray Absorption and Emission Spectroscopy
- Neutrons and Neutron Spectroscopy
- EPR Spectroscopy of Inorganic Materials
- Analysis of Functional Materials by X-Ray Photoelectron Spectroscopy
This addition to the Inorganic ... Read more
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Publication date
2013
Publisher
John Wiley & Sons Inc United States
Number of pages
380
Condition
New
Series
Inorganic Materials Series
Number of Pages
380
Format
Hardback
Place of Publication
New York, United States
ISBN
9781119953203
SKU
V9781119953203
Shipping Time
Usually ships in 15 to 20 working days
Ref
99-15
About Bruce, Duncan W.; O'Hare, Dermot; Walton, Richard I.
Series Editors Duncan W. Bruce, Department of Chemistry, University of York, UK Dermot O’Hare, Chemistry Research Laboratory, University of Oxford, UK Richard I. Walton, Department of Chemistry, University of Warwick, UK
Reviews for Local Structural Characterisation