沃新书屋 - 纳米多孔材料 - 作者:Zhao, X.S.

Zhao, X.S.

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纳米多孔材料书籍相关信息

  • ISBN:9781860942105
  • 作者:Lu, G.Q. / Zhao, X.S.
  • 出版社:Imperial College Press
  • 出版时间:2005-02
  • 页数:897
  • 价格:$176
  • 纸张:暂无纸张
  • 装帧:Hardcover
  • 开本:暂无开本
  • 语言:暂无语言
  • 适合人群:科研人员, 材料工程师, 化学爱好者, 工程技术人员, 大学相关专业的学生, 对新材料研究感兴趣的人士
  • TAG:工程学 / 材料科学 / 物理学 / 应用化学 / 纳米技术 / 新材料
  • 豆瓣评分:暂无豆瓣评分
  • 更新时间:2025-05-18 19:58:34

内容简介:

Porous materials are of scientific and technological importance because of the presence of voids of controllable dimensions at the atomic, molecular, and nanometer scales, enabling them to discriminate and interact with molecules and clusters. Interestingly the big deal about this class of materials is about the "nothingness" within — the pore space. International Union of Pure and Applied Chemistry (IUPAC) classifies porous materials into three categories — micropores of less than 2 nm in diameter, mesopores between 2 and 50 nm, and macropores of greater than 50 nm. In this book, nanoporous materials are defined as those porous materials with pore diameters less than 100 nm. Over the last decade, there has been an ever increasing interest and research effort in the synthesis, characterization, functionalization, molecular modeling and design of nanoporous materials. The main challenges in research include the fundamental understanding of structure-property relations and tailor-design of nanostructures for specific properties and applications. Research efforts in this field have been driven by the rapid growing emerging applications such as biosensor, drug delivery, gas separation, energy storage and fuel cell technology, nanocatalysis and photonics. These applications offer exciting new opportunities for scientists to develop new strategies and techniques for the synthesis and applications of these materials. This book provides a series of systematic reviews of the recent developments in nanoporous materials. It covers the following topics: (1) synthesis, processing, characterization and property evaluation; (2) functionalization by physical and/or chemical treatments; (3) experimental and computational studies on fundamental properties, such as catalytic effects, transport and adsorption, molecular sieving and biosorption; (4) applications, including photonic devices, catalysis, environmental pollution control, biological molecules separation and isolation, sensors, membranes, hydrogen and energy storage, etc.