Isbn: 9783527355785 - battery materials characterization: advanced techniques and applications (13 risultati)

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  • Lingua: Inglese

    Editore: Wiley-VCH GmbH, 2026

    3527355782 / 9783527355785

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    Da: moluna, Greven, Germaniamoluna

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  • Lingua: Inglese

    Editore: Wiley-VCH, 2026

    3527355782 / 9783527355785

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    Da: California Books, Miami, FL, U.S.A.California Books

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  • Lingua: Inglese

    Editore: Wiley-VCH Gmbh Sep 2026, 2026

    3527355782 / 9783527355785

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    Da: BuchWeltWeit Ludwig Meier e.K., Bergisch Gladbach, GermaniaBuchWeltWeit Ludwig Meier e.K.

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    Buch. Condizione: Neu. Neuware -Connect battery materials properties to performance through advanced characterization techniquesUnderstanding electrochemical processes during battery cycling demands specialized analytical tools that go beyond static analysis. Battery Materials Characterization: Advanced Techniques and Applications, written by two searchers with combined publications exceeding 280 papers in energy materials and synchrotron radiation, covers a wide range of battery types and the in situ/operando characterization methods required to link materials properties with electrochemical performance.The book provides dedicated treatment of XAS, TXM, ND/PDF, RIXS, EPR, TOF-SIMS, DEMS, and Cs-TEM variants applied to battery systems. Each technique is examined through case studies addressing material degradation, interfacial reactions, dynamic structural evolution, and electronic state changes under operational conditions. Coverage extends to multimodal analysis approaches that combine multiple methods for multiscale, multidimensional characterization of battery materials.The book also covers:\* In situ and operando characterization methods enabling real-time tracking of material dynamics during battery cycling and operation\* Integration of multi-mode characterizations combining spectroscopy, microscopy, and diffraction for multiscale analysis of electrode materials\* Actionable guidance and real-world case studies demonstrating practical application of each analytical technique to battery research\* Machine learning and large-scale data analysis approaches applied to characterization data interpretation and materials discovery\* Emerging ultrafast and high-resolution methods representing future directions in battery materials analysis and electrochemical researchWritten for materials scientists, electrochemists, spectroscopists, structural chemists, solid state chemists, and physical chemists, this reference connects advanced characterization techniques with practical battery research applications. It serves researchers and practitioners who require authoritative, technique-specific guidance across multiple battery chemistries and analytical methods. 384 pp. Englisch.

  • Lingua: Inglese

    Editore: Wiley-VCH Gmbh Sep 2026, 2026

    3527355782 / 9783527355785

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    Da: Rheinberg-Buch Andreas Meier eK, Bergisch Gladbach, GermaniaRheinberg-Buch Andreas Meier eK

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    EUR 159,00

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    Buch. Condizione: Neu. Neuware -Connect battery materials properties to performance through advanced characterization techniquesUnderstanding electrochemical processes during battery cycling demands specialized analytical tools that go beyond static analysis. Battery Materials Characterization: Advanced Techniques and Applications, written by two searchers with combined publications exceeding 280 papers in energy materials and synchrotron radiation, covers a wide range of battery types and the in situ/operando characterization methods required to link materials properties with electrochemical performance.The book provides dedicated treatment of XAS, TXM, ND/PDF, RIXS, EPR, TOF-SIMS, DEMS, and Cs-TEM variants applied to battery systems. Each technique is examined through case studies addressing material degradation, interfacial reactions, dynamic structural evolution, and electronic state changes under operational conditions. Coverage extends to multimodal analysis approaches that combine multiple methods for multiscale, multidimensional characterization of battery materials.The book also covers:\* In situ and operando characterization methods enabling real-time tracking of material dynamics during battery cycling and operation\* Integration of multi-mode characterizations combining spectroscopy, microscopy, and diffraction for multiscale analysis of electrode materials\* Actionable guidance and real-world case studies demonstrating practical application of each analytical technique to battery research\* Machine learning and large-scale data analysis approaches applied to characterization data interpretation and materials discovery\* Emerging ultrafast and high-resolution methods representing future directions in battery materials analysis and electrochemical researchWritten for materials scientists, electrochemists, spectroscopists, structural chemists, solid state chemists, and physical chemists, this reference connects advanced characterization techniques with practical battery research applications. It serves researchers and practitioners who require authoritative, technique-specific guidance across multiple battery chemistries and analytical methods. 384 pp. Englisch.

  • Lingua: Inglese

    Editore: Wiley-VCH Gmbh Sep 2026, 2026

    3527355782 / 9783527355785

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    Da: Wegmann1855, Zwiesel, GermaniaWegmann1855

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    Buch. Condizione: Neu. Neuware -Connect battery materials properties to performance through advanced characterization techniques Understanding electrochemical processes during battery cycling demands specialized analytical tools that go beyond static analysis. Battery Materials Characterization: Advanced Techniques and Applications, written by two searchers with combined publications exceeding 280 papers in energy materials and synchrotron radiation, covers a wide range of battery types and the in situ/operando characterization methods required to link materials properties with electrochemical performance. The book provides dedicated treatment of XAS, TXM, ND/PDF, RIXS, EPR, TOF-SIMS, DEMS, and Cs-TEM variants applied to battery systems. Each technique is examined through case studies addressing material degradation, interfacial reactions, dynamic structural evolution, and electronic state changes under operational conditions. Coverage extends to multimodal analysis approaches that combine multiple methods for multiscale, multidimensional characterization of battery materials. The book also covers: - In situ and operando characterization methods enabling real-time tracking of material dynamics during battery cycling and operation- Integration of multi-mode characterizations combining spectroscopy, microscopy, and diffraction for multiscale analysis of electrode materials- Actionable guidance and real-world case studies demonstrating practical application of each analytical technique to battery research- Machine learning and large-scale data analysis approaches applied to characterization data interpretation and materials discovery- Emerging ultrafast and high-resolution methods representing future directions in battery materials analysis and electrochemical research Written for materials scientists, electrochemists, spectroscopists, structural chemists, solid state chemists, and physical chemists, this reference connects advanced characterization techniques with practical battery research applications. It serves researchers and practitioners who require authoritative, technique-specific guidance across multiple battery chemistries and analytical methods.

  • Lingua: Inglese

    Editore: Wiley-VCH GmbH, 2026

    3527355782 / 9783527355785

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    Da: preigu, Osnabrück, Germaniapreigu

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    Buch. Condizione: Neu. Battery Materials Characterization | Advanced Techniques and Applications | Ning Li (u. a.) | Buch | 384 S. | Englisch | 2026 | Wiley-VCH GmbH | EAN 9783527355785 | Verantwortliche Person für die EU: Wiley-VCH GmbH, Boschstr. 12, 69469 Weinheim, product-safety[at]wiley[dot]com | Anbieter: preigu.

  • Lingua: Inglese

    Editore: Wiley-VCH Gmbh Sep 2026, 2026

    3527355782 / 9783527355785

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    Da: buchversandmimpf2000, Emtmannsberg, BAYE, Germaniabuchversandmimpf2000

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    Buch. Condizione: Neu. Neuware -Connect battery materials properties to performance through advanced characterization techniques Understanding electrochemical processes during battery cycling demands specialized analytical tools that go beyond static analysis. Battery Materials Characterization: Advanced Techniques and Applications, written by two searchers with combined publications exceeding 280 papers in energy materials and synchrotron radiation, covers a wide range of battery types and the in situ/operando characterization methods required to link materials properties with electrochemical performance. The book provides dedicated treatment of XAS, TXM, ND/PDF, RIXS, EPR, TOF-SIMS, DEMS, and Cs-TEM variants applied to battery systems. Each technique is examined through case studies addressing material degradation, interfacial reactions, dynamic structural evolution, and electronic state changes under operational conditions. Coverage extends to multimodal analysis approaches that combine multiple methods for multiscale, multidimensional characterization of battery materials. The book also covers: - In situ and operando characterization methods enabling real-time tracking of material dynamics during battery cycling and operation- Integration of multi-mode characterizations combining spectroscopy, microscopy, and diffraction for multiscale analysis of electrode materials- Actionable guidance and real-world case studies demonstrating practical application of each analytical technique to battery research- Machine learning and large-scale data analysis approaches applied to characterization data interpretation and materials discovery- Emerging ultrafast and high-resolution methods representing future directions in battery materials analysis and electrochemical research Written for materials scientists, electrochemists, spectroscopists, structural chemists, solid state chemists, and physical chemists, this reference connects advanced characterization techniques with practical battery research applications. It serves researchers and practitioners who require authoritative, technique-specific guidance across multiple battery chemistries and analytical methods.Wiley-VCH GmbH, Boschstraße 12, 69469 Weinheim 384 pp. Englisch.

  • Lingua: Inglese

    Editore: Wiley-Vch Verlag Gmbh, 2026

    3527355782 / 9783527355785

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    Da: Revaluation Books, Exeter, Regno UnitoRevaluation Books

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    Hardcover. Condizione: Brand New. In Stock.

  • Lingua: Inglese

    Editore: Wiley-VCH Gmbh Sep 2026, 2026

    3527355782 / 9783527355785

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    Da: AHA-BUCH GmbH, Einbeck, GermaniaAHA-BUCH GmbH

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    Buch. Condizione: Neu. Neuware - Connect battery materials properties to performance through advanced characterization techniques Understanding electrochemical processes during battery cycling demands specialized analytical tools that go beyond static analysis. Battery Materials Characterization: Advanced Techniques and Applications, written by two searchers with combined publications exceeding 280 papers in energy materials and synchrotron radiation, covers a wide range of battery types and the in situ/operando characterization methods required to link materials properties with electrochemical performance. The book provides dedicated treatment of XAS, TXM, ND/PDF, RIXS, EPR, TOF-SIMS, DEMS, and Cs-TEM variants applied to battery systems. Each technique is examined through case studies addressing material degradation, interfacial reactions, dynamic structural evolution, and electronic state changes under operational conditions. Coverage extends to multimodal analysis approaches that combine multiple methods for multiscale, multidimensional characterization of battery materials. The book also covers: In situ and operando characterization methods enabling real-time tracking of material dynamics during battery cycling and operationIntegration of multi-mode characterizations combining spectroscopy, microscopy, and diffraction for multiscale analysis of electrode materialsActionable guidance and real-world case studies demonstrating practical application of each analytical technique to battery researchMachine learning and large-scale data analysis approaches applied to characterization data interpretation and materials discoveryEmerging ultrafast and high-resolution methods representing future directions in battery materials analysis and electrochemical research Written for materials scientists, electrochemists, spectroscopists, structural chemists, solid state chemists, and physical chemists, this reference connects advanced characterization techniques with practical battery research applications. It serves researchers and practitioners who require authoritative, technique-specific guidance across multiple battery chemistries and analytical methods.

  • Lingua: Inglese

    Editore: Wiley-VCH Gmbh Sep 2026, 2026

    3527355782 / 9783527355785

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    Da: Books-by-Floh, Paderborn, GermaniaBooks-by-Floh

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    Buch. Condizione: Neu. Neuware -Connect battery materials properties to performance through advanced characterization techniques Understanding electrochemical processes during battery cycling demands specialized analytical tools that go beyond static analysis. Battery Materials Characterization: Advanced Techniques and Applications, written by two searchers with combined publications exceeding 280 papers in energy materials and synchrotron radiation, covers a wide range of battery types and the in situ/operando characterization methods required to link materials properties with electrochemical performance. The book provides dedicated treatment of XAS, TXM, ND/PDF, RIXS, EPR, TOF-SIMS, DEMS, and Cs-TEM variants applied to battery systems. Each technique is examined through case studies addressing material degradation, interfacial reactions, dynamic structural evolution, and electronic state changes under operational conditions. Coverage extends to multimodal analysis approaches that combine multiple methods for multiscale, multidimensional characterization of battery materials. The book also covers: - In situ and operando characterization methods enabling real-time tracking of material dynamics during battery cycling and operation- Integration of multi-mode characterizations combining spectroscopy, microscopy, and diffraction for multiscale analysis of electrode materials- Actionable guidance and real-world case studies demonstrating practical application of each analytical technique to battery research- Machine learning and large-scale data analysis approaches applied to characterization data interpretation and materials discovery- Emerging ultrafast and high-resolution methods representing future directions in battery materials analysis and electrochemical research Written for materials scientists, electrochemists, spectroscopists, structural chemists, solid state chemists, and physical chemists, this reference connects advanced characterization techniques with practical battery research applications. It serves researchers and practitioners who require authoritative, technique-specific guidance across multiple battery chemistries and analytical methods. 384 pp. Englisch.

  • Lingua: Inglese

    Editore: Wiley-VCH Verlag GmbH, Berlin, 2026

    3527355782 / 9783527355785

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    Hardcover. Condizione: new. Hardcover. Connect battery materials properties to performance through advanced characterization techniques Understanding electrochemical processes during battery cycling demands specialized analytical tools that go beyond static analysis. Battery Materials Characterization: Advanced Techniques and Applications, written by two searchers with combined publications exceeding 280 papers in energy materials and synchrotron radiation, covers a wide range of battery types and the in situ/operando characterization methods required to link materials properties with electrochemical performance. The book provides dedicated treatment of XAS, TXM, ND/PDF, RIXS, EPR, TOF-SIMS, DEMS, and Cs-TEM variants applied to battery systems. Each technique is examined through case studies addressing material degradation, interfacial reactions, dynamic structural evolution, and electronic state changes under operational conditions. Coverage extends to multimodal analysis approaches that combine multiple methods for multiscale, multidimensional characterization of battery materials. The book also covers: In situ and operando characterization methods enabling real-time tracking of material dynamics during battery cycling and operationIntegration of multi-mode characterizations combining spectroscopy, microscopy, and diffraction for multiscale analysis of electrode materialsActionable guidance and real-world case studies demonstrating practical application of each analytical technique to battery researchMachine learning and large-scale data analysis approaches applied to characterization data interpretation and materials discoveryEmerging ultrafast and high-resolution methods representing future directions in battery materials analysis and electrochemical research Written for materials scientists, electrochemists, spectroscopists, structural chemists, solid state chemists, and physical chemists, this reference connects advanced characterization techniques with practical battery research applications. It serves researchers and practitioners who require authoritative, technique-specific guidance across multiple battery chemistries and analytical methods. This item is printed on demand. Shipping may be from multiple locations in the US or from the UK, depending on stock availability.

  • Lingua: Inglese

    Editore: Wiley-VCH Verlag GmbH, Berlin, 2026

    3527355782 / 9783527355785

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    Hardcover. Condizione: new. Hardcover. Connect battery materials properties to performance through advanced characterization techniques Understanding electrochemical processes during battery cycling demands specialized analytical tools that go beyond static analysis. Battery Materials Characterization: Advanced Techniques and Applications, written by two searchers with combined publications exceeding 280 papers in energy materials and synchrotron radiation, covers a wide range of battery types and the in situ/operando characterization methods required to link materials properties with electrochemical performance. The book provides dedicated treatment of XAS, TXM, ND/PDF, RIXS, EPR, TOF-SIMS, DEMS, and Cs-TEM variants applied to battery systems. Each technique is examined through case studies addressing material degradation, interfacial reactions, dynamic structural evolution, and electronic state changes under operational conditions. Coverage extends to multimodal analysis approaches that combine multiple methods for multiscale, multidimensional characterization of battery materials. The book also covers: In situ and operando characterization methods enabling real-time tracking of material dynamics during battery cycling and operationIntegration of multi-mode characterizations combining spectroscopy, microscopy, and diffraction for multiscale analysis of electrode materialsActionable guidance and real-world case studies demonstrating practical application of each analytical technique to battery researchMachine learning and large-scale data analysis approaches applied to characterization data interpretation and materials discoveryEmerging ultrafast and high-resolution methods representing future directions in battery materials analysis and electrochemical research Written for materials scientists, electrochemists, spectroscopists, structural chemists, solid state chemists, and physical chemists, this reference connects advanced characterization techniques with practical battery research applications. It serves researchers and practitioners who require authoritative, technique-specific guidance across multiple battery chemistries and analytical methods. This item is printed on demand. Shipping may be from our UK warehouse or from our Australian or US warehouses, depending on stock availability.

  • Lingua: Inglese

    Editore: Wiley-VCH Verlag GmbH, Berlin, 2026

    3527355782 / 9783527355785

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    Hardcover. Condizione: new. Hardcover. Connect battery materials properties to performance through advanced characterization techniques Understanding electrochemical processes during battery cycling demands specialized analytical tools that go beyond static analysis. Battery Materials Characterization: Advanced Techniques and Applications, written by two searchers with combined publications exceeding 280 papers in energy materials and synchrotron radiation, covers a wide range of battery types and the in situ/operando characterization methods required to link materials properties with electrochemical performance. The book provides dedicated treatment of XAS, TXM, ND/PDF, RIXS, EPR, TOF-SIMS, DEMS, and Cs-TEM variants applied to battery systems. Each technique is examined through case studies addressing material degradation, interfacial reactions, dynamic structural evolution, and electronic state changes under operational conditions. Coverage extends to multimodal analysis approaches that combine multiple methods for multiscale, multidimensional characterization of battery materials. The book also covers: In situ and operando characterization methods enabling real-time tracking of material dynamics during battery cycling and operationIntegration of multi-mode characterizations combining spectroscopy, microscopy, and diffraction for multiscale analysis of electrode materialsActionable guidance and real-world case studies demonstrating practical application of each analytical technique to battery researchMachine learning and large-scale data analysis approaches applied to characterization data interpretation and materials discoveryEmerging ultrafast and high-resolution methods representing future directions in battery materials analysis and electrochemical research Written for materials scientists, electrochemists, spectroscopists, structural chemists, solid state chemists, and physical chemists, this reference connects advanced characterization techniques with practical battery research applications. It serves researchers and practitioners who require authoritative, technique-specific guidance across multiple battery chemistries and analytical methods. This item is printed on demand. Shipping may be from our Sydney, NSW warehouse or from our UK or US warehouse, depending on stock availability.