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|a UAMI
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|a Artur Braun.
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|a X-ray Studies on Electrochemical Systems :
|b Synchrotron Methods for Energy Materials.
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|a Berlin/Boston, UNITED STATES :
|b De Gruyter,
|c 2017.
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|a 1 online resource (492).
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|t Frontmatter --
|t Preface --
|t Acknowledgement --
|t Contents --
|t 1 Introduction --
|t 2 Molecular structure and electronic structure --
|t 3 Crystal structure and microstructure --
|t 4 Real space imaging and tomography --
|t 5 Resonant methods and chemical contrast variation --
|t 6 Surface-sensitive and volume-sensitive methods --
|t 7 Organic and bio-organic samples --
|t 8 Complex case studies/electrochemical in situ studies --
|t 9 Correlation of electronic structure and conductivity --
|t 10 Radiation damages --
|t 11 Background subtraction --
|t Appendix --
|t References --
|t Index.
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|a This book is your graduate level entrance into battery, fuel cell and solar cell research at synchrotron x-ray sources. Materials scientists find numerous examples for the combination of electrochemical experiments with simple and with highly complex x-ray scattering and spectroscopy methods. Physicists and chemists can link applied electrochemistry with fundamental concepts of condensed matter physics, physical chemistry and surface science. Contents:IntroductionMolecular Structure and Electronic StructureCrystal Structure and MicrostructureReal Space Imaging and TomographyResonant Methods and Chemical Contrast VariationSurface Sensitive and Volume Sensitive MethodsOrganic and Bio-Organic SamplesComplex Case Studies / Electrochemical In Situ StudiesCorrelation of Electronic Structure And ConductivityRadiation DamagesBackground SubtractionX-Ray Physics Nobel PrizesSynchrotron Centers WorldElectromagnetic SpectrumK[alpha], [Beta] X-Ray EnergiesPeriodic Table of Elements.
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590 |
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|b EBSCO eBook Subscription Academic Collection - Worldwide
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|a Electrochemistry
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