In Situ Characterization Methods In Energy Materials Research
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Author | : Alexander Ziegler |
Publisher | : Springer Science & Business Media |
Total Pages | : 265 |
Release | : 2014-04-01 |
Genre | : Science |
ISBN | : 3642451527 |
The behavior of nanoscale materials can change rapidly with time either because the environment changes rapidly or because the influence of the environment propagates quickly across the intrinsically small dimensions of nanoscale materials. Extremely fast time resolution studies using X-rays, electrons and neutrons are of very high interest to many researchers and is a fast-evolving and interesting field for the study of dynamic processes. Therefore, in situ structural characterization and measurements of structure-property relationships covering several decades of length and time scales (from atoms to millimeters and femtoseconds to hours) with high spatial and temporal resolutions are crucially important to understand the synthesis and behavior of multidimensional materials. The techniques described in this book will permit access to the real-time dynamics of materials, surface processes and chemical and biological reactions at various time scales. This book provides an interdisciplinary reference for research using in situ techniques to capture the real-time structural and property responses of materials to surrounding fields using electron, optical and x-ray microscopies (e.g. scanning, transmission and low-energy electron microscopy and scanning probe microscopy) or in the scattering realm with x-ray, neutron and electron diffraction.
Author | : Mehdi Khodaei |
Publisher | : BoD – Books on Demand |
Total Pages | : 127 |
Release | : 2017-03-22 |
Genre | : Science |
ISBN | : 9535130137 |
Nowadays, nanomaterials are attracting huge attentions not only from a basic research point of view but also for their potential applications. Since finding the structure-property-processing relationships can open new windows in the application of materials, the material characterizations play a crucial role in the research and development of materials science. The increasing demand for energy with the necessity to find alternative renewable and sustainable energy sources leads to the rapid growth in attention to energy materials. In this book, the results of some outstanding researches on synchrotron-based characterization of nanostructured materials related to energy applications are presented.
Author | : |
Publisher | : DIANE Publishing |
Total Pages | : 232 |
Release | : |
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ISBN | : 1422345653 |
Author | : Ambesh Dixit |
Publisher | : Springer Nature |
Total Pages | : 360 |
Release | : |
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ISBN | : 9819990092 |
Author | : |
Publisher | : DIANE Publishing |
Total Pages | : 196 |
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ISBN | : 1422345602 |
Author | : Gertjan Koster |
Publisher | : Elsevier |
Total Pages | : 295 |
Release | : 2011-10-05 |
Genre | : Technology & Engineering |
ISBN | : 0857094955 |
Advanced techniques for characterizing thin film growth in situ help to develop improved understanding and faster diagnosis of issues with the process. In situ characterization of thin film growth reviews current and developing techniques for characterizing the growth of thin films, covering an important gap in research.Part one covers electron diffraction techniques for in situ study of thin film growth, including chapters on topics such as reflection high-energy electron diffraction (RHEED) and inelastic scattering techniques. Part two focuses on photoemission techniques, with chapters covering ultraviolet photoemission spectroscopy (UPS), X-ray photoelectron spectroscopy (XPS) and in situ spectroscopic ellipsometry for characterization of thin film growth. Finally, part three discusses alternative in situ characterization techniques. Chapters focus on topics such as ion beam surface characterization, real time in situ surface monitoring of thin film growth, deposition vapour monitoring and the use of surface x-ray diffraction for studying epitaxial film growth.With its distinguished editors and international team of contributors, In situ characterization of thin film growth is a standard reference for materials scientists and engineers in the electronics and photonics industries, as well as all those with an academic research interest in this area. - Chapters review electron diffraction techniques, including the methodology for observations and measurements - Discusses the principles and applications of photoemission techniques - Examines alternative in situ characterisation techniques
Author | : Frances M. Ross |
Publisher | : Cambridge University Press |
Total Pages | : 529 |
Release | : 2017 |
Genre | : Science |
ISBN | : 1107116570 |
2.6.2 Electrodes for Electrochemistry
Author | : Ming-Fa Lin |
Publisher | : CRC Press |
Total Pages | : 316 |
Release | : 2019-06-18 |
Genre | : Science |
ISBN | : 0429881169 |
Green Energy Materials Handbook gives a systematic review of the development of reliable, low-cost, and high-performance green energy materials, covering mainstream computational and experimental studies as well as comprehensive literature on green energy materials, computational methods, experimental fabrication and characterization techniques, and recent progress in the field. This work presents complete experimental measurements and computational results as well as potential applications. Among green technologies, electrochemical and energy storage technologies are considered as the most practicable, environmentally friendly, and workable to make full use of renewable energy sources. This text includes 11 chapters on the field, devoted to 4 important topical areas: computational material design, energy conversion, ion transport, and electrode materials. This handbook is aimed at engineers, researchers, and those who work in the fields of materials science, chemistry, and physics. The systematic studies proposed in this book can greatly promote the basic and applied sciences.
Author | : |
Publisher | : DIANE Publishing |
Total Pages | : 214 |
Release | : |
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ISBN | : 1422345629 |
Author | : |
Publisher | : |
Total Pages | : 704 |
Release | : 1980 |
Genre | : Environmental engineering |
ISBN | : |