Handbook of Nanophase and Nanostructured Materials

Handbook of Nanophase and Nanostructured Materials PDF

Author: Z.L. Wang

Publisher: Springer Science & Business Media

Published: 2002-11-30

Total Pages: 1519

ISBN-13: 030647249X

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These books, with of a total of 40 chapters, are a comprehensive and complete introductory text on the synthesis, characterization, and applications of nanomaterials. They are aimed at graduate students and researchers whose background is chemistry, physics, materials science, chemical engineering, electrical engineering, and biomedical science. The first part emphasizes the chemical and physical approaches used for synthesis of nanomaterials. The second part emphasizes the techniques used for characterizing the structure and properties of nanomaterials, aiming at describing the physical mechanism, data interpretation, and detailed applications of the techniques. The final part focuses on systems of different nanostructural materials with novel properties and applications.

Handbook of Nanophase and Nanostructured Materials: Characterization

Handbook of Nanophase and Nanostructured Materials: Characterization PDF

Author: Zhong Lin Wang

Publisher: 清华大学出版社有限公司

Published: 2003

Total Pages: 424

ISBN-13: 9787302054429

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纳米相和纳米结构材料是纳米科学和纳米技术的基础。纳米相和纳米结构材料手册是一套综述纳米学科在材料合成、结构和性能表征、理论模拟、实际应用和发展前沿的书籍。本书是这套丛书的第二本。书中内容详细阐述分析表征纳米材料的方法和技术。主要围绕表征技术在分析纳米材料原子结构和物理化学性能中的原理、数据分析过程和具体应用,并介绍了各种方法的最新进展和参考文献。

Spectroscopic Properties of Rare Earths in Optical Materials

Spectroscopic Properties of Rare Earths in Optical Materials PDF

Author: Guokui Liu

Publisher: 清华大学出版社有限公司

Published: 2005

Total Pages: 636

ISBN-13: 9787302074090

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Aimed at researchers and graduate students, this book provides up-to-date information about the electronic interactions that impact the optical properties of rare earth ions in solids. Its goal is to establish a connection between fundamental principles and the materials properties of rare-earth activated luminescent and laser optical materials. The theoretical survey and introduction to spectroscopic properties covers electronic energy level structure, intensities of optical transitions, ion-phonon interactions, line broadening, and energy transfer and up-conversion. An important aspect of the book lies in its deep and detailed discussions of materials properties and the potential of new applications such as optical storage, information processing, nanophotonics, and molecular probes that have been identified in recent experimental studies. This volume will be a valuable reference book on advanced topics of rare earth spectroscopy and materials science.