One-dimensional mesoporous inorganic nanomaterials basics and applications

Introduction -- Characterization of 1D mesoporous nanomaterials -- Designed growth of mesoporous inorganic nanowires, nanorods, nanofibers and nanobelts -- Designed growth of mesoporous inorganic nanotubes -- Designed growth of other typical 1D mesoporous inorganic nanostructures -- Applications of...

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Bibliographische Detailangaben
1. Verfasser: Hou, Huilin (VerfasserIn)
Weitere Verfasser: Xu, Linli (VerfasserIn), Yang, Weiyou (VerfasserIn), Wong, Wai-Yeung (VerfasserIn)
Format: UnknownFormat
Sprache:eng
Veröffentlicht: Cham Springer 2022
Schriftenreihe:Springer series in materials science volume 321
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Beschreibung
Zusammenfassung:Introduction -- Characterization of 1D mesoporous nanomaterials -- Designed growth of mesoporous inorganic nanowires, nanorods, nanofibers and nanobelts -- Designed growth of mesoporous inorganic nanotubes -- Designed growth of other typical 1D mesoporous inorganic nanostructures -- Applications of 1D mesoporous inorganic nanomaterials in energy storage and conversion -- Applications of 1D mesoporous inorganic nanomaterials as sensors -- Applications of 1D mesoporous inorganic nanomaterials in catalysis -- Applications of 1D mesoporous inorganic nanomaterials as adsorbents -- Other potential applications based on 1D mesoporous inorganic nanomaterials -- Conclusions and outlooks.
This book provides a comprehensive look at one-dimensional (1D) mesoporous inorganic nanomaterials. Beginning with a systematic presentation of their characterization using advanced electron microscopy techniques, the book discusses how to design the growth of 1D nanomaterials in order to achieve different, application-targeted morphologies such as nanowires, nanorods, nanofibers, nanotubes, and nanobelts. Subsequently, the book systematically summarizes current state-of-the-art research activities, encompassing energy conversion and storage, catalysis, sensing, and adsorption. The book concludes with a forward-looking summary of the different prospects of these materials for novel energy applications, as well as the challenges faced regarding their mass production, cost-effective synthesis strategies, and a deep understanding of the physics involved in the microstructure-dependent performance. Featuring broad and up-to-date coverage of this rapidly growing field, this book is useful for researchers working at the intersections of materials science, chemistry, and advanced energy devices.
Beschreibung:xi, 202 Seiten
Illustrationen, Diagramme
ISBN:9783030891046
978-3-030-89104-6