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05243cam a2200649Mi 4500 |
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1159643472 |
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20220408104148.0 |
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160602t20162016ne a ob 001 0 eng d |
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|a 0128050780
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|a 9780128050781
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|a 0128047135
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|a 9780128047132
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|a (OCoLC)1159643472
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|a UKBTH
|b eng
|e rda
|e pn
|c UKBTH
|d OCLCF
|d OCLCO
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|a COM6
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|a QD96.N8
|b .A568 2016
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|a 543.66
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1 |
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|a Webb, Graham A.
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|a Annual reports on NMR spectroscopy.
|n Volume eighty eight / edited by Graham A. Webb.
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250 |
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|a First edition.
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264 |
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|a Amsterdam, [Netherlands] :
|b Academic Press,
|c 2016.
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264 |
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|c ©2016.
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300 |
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|a 1 online resource (405 pages).
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336 |
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|a text
|b txt.
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|a computer
|b c.
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|a online resource
|b cr.
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490 |
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|a Annual Reports on NMR Spectroscopy ;
|v Volume 88.
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500 |
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|a Description based upon print version of record.
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500 |
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|a 4.3. Proton Dynamics in Organic Acid Salts.
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|a Includes bibliographical references at the end of each chapters and index.
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|a Front Cover; Annual Reports on NMR Spectroscopy; Copyright; Contents; Contributors; Preface; Chapter One: Reviewing 47/49Ti Solid-State NMR Spectroscopy: From Alloys and Simple Compounds to Catalysts and Porous Mat ...; 1. Introduction; 2. NMR Background and Experimental Methods; 3. Chemical Shift Referencing; 4. Literature Review; 4.1. Ti Metal; 4.2. TiH2, TiD2, and Stoichiometric Derivatives; 4.3. TiO2 Compounds: Anatase, Rutile, and Brookite Polymorphs; 4.3.1. Rutile TiO2; 4.3.2. Anatase TiO2; 4.3.3. Brookite TiO2; 4.4. BaTiO3 and SrTiO3; 4.5. Perovskites, ATiO3, and Related Compounds.
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|a 4.6. Ti Intermetallic and Binary Compounds4.7. Porous and Layered Materials; 4.8. Practical Applications of 47/49Ti SSNMR Spectroscopy in Recent Times; 5. Summary and Future Outlook; Acknowledgments; References; Chapter Two: Advances in 27Al MAS NMR Studies of Geopolymers; 1. Introduction; 1.1. Brief History of Geopolymers; 1.2. Typical Applications of Geopolymers; 1.3. Conventional Routes of Geopolymer Synthesis; 1.4. Modification of Geopolymers: Nanostructured and Hybrid Systems; 1.5. Methods of Structural Analysis of Geopolymers; 2. Background of 27Al MAS NMR Spectroscopy.
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|a 2.1. Solid-State NMR Spectra of Aluminosilicates2.2. Energy State of Quadrupolar Nuclei; 2.3. Principles of Removing Quadrupolar Broadening; 3. Multiple-Quantum Magic-Angle Spinning Spectroscopy (27Al MQ/MAS NMR); 3.1. Basic Two- and Three-Pulse Experiments; 3.2. Processing of 2D MQ/MAS NMR Spectra; 3.3. Alternative Analysis of 2D MQ/MAS NMR Spectra: Q-Shearing and Bi-Axial Shearing; 3.4. Advanced 2D 27Al MQ/MAS NMR Spectroscopy; 3.5. Heteronuclear 1H-27Al MQ/MAS NMR Techniques; 4. Recent Applications of 27Al MAS NMR Spectroscopy on Geopolymers.
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|a 4.1. Formation and Transformation of Geopolymer Matrix as Seen in 27Al MAS NMR Spectra4.2. Connectivities Between Si-O-Al Atoms and Site-Specific Hydration in Geopolymeric Materials; 4.3. Characterizing Aluminum Framework Sites in Model Systems by 2D 27Al 3Q/MAS NMR; 4.4. Aluminum Framework Sites in Geopolymers; 4.5. Distribution of H2O, -OH and Other Proton Species in Geopolymer Matrix; 4.6. Principle Component Analysis of 27Al MAS NMR Spectra; 5. Conclusions and Outlook; Acknowledgments; References.
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|a Chapter Three: Applications of NMR Techniques in the Development and Operation of Proton Exchange Membrane Fuel Cells1. Application Background; 2. NMR Techniques Being Applied to PEMFCs; 2.1. Solution-State and Solid-State NMR Spectroscopy; 2.2. Pulsed Field Gradient NMR; 2.3. Relaxometry; 2.4. Magnetic Resonance Imaging Techniques; 3. Solution-State NMR; 3.1. Structural Characterization; 3.2. Proton Dynamics in Model Systems; 4. Solid-State NMR; 4.1. Proton Dynamics in Proton-Conducting Polymers and Composites; 4.2. Proton Dynamics in Solid Acid Salts.
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|a Description based on online resource; title from PDF title page (ebrary, viewed May 20, 2016).
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546 |
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|a English.
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650 |
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|a Nuclear magnetic resonance spectroscopy.
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650 |
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2 |
|a Magnetic Resonance Spectroscopy.
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650 |
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|a Spectroscopie de la résonance magnétique nucléaire.
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650 |
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|a Nuclear magnetic resonance spectroscopy.
|2 fast.
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655 |
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|a Electronic books.
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700 |
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|a Webb, Graham A.,
|e editor.
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|a ScienceDirect (Online service)
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|a Annual reports on NMR spectroscopy.
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|a .b65215485
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|a MARCIVE Comprehensive, in 2023.02
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|a MARCIVE Over, 05/2022
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|a 92
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|a Loaded with m2btab.ltiac in 2023.02
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|a Loaded with m2btab.ltiac in 2022.05
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|a Loaded with m2btab.elec in 2022.04
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|3 Elsevier
|z Click here for access
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