Molecule-Based Materials: The Structural Network Approach

Molecule-Based Materials: The Structural Network Approach
复制标题

DOI:
--
复制
发表时间:
2005-12
期刊:
--
影响因子:
--
通讯作者:
L. Öhrström;K. Larsson
L. Öhrström;K. Larsson
中科院分区:
其他
文献类型:
--
作者:
L. Öhrström;K. Larsson

文献摘要

被引文献

相似文献

材料的性质不仅取决于它所包含的特定原子和分子,还取决于这些原子和分子在空间中的排列。许多这种三维排列被描述为“三维网络”。《基于分子的材料:结构网络方法》是关于此类网络的合成、描述、命名和分析,以及网络与材料物理性质的关系。它介绍了相关数学知识,并包含一个对用于检索、分析和命名网络的程序的简短指南。本书配有配位聚合物和氢键网络的插图和实例,这本独特且易于阅读的书审视了三维网络的各个方面,对于晶体学、无机或有机化学领域的新手、经验丰富的学生和研究人员无疑具有重要价值。 读者对象:有机、无机或材料化学以及晶体学、制药、“电子”和“光子”材料以及纳米科学领域的本科(及以下)学生以及学术或工业研究人员。 目录 第1章 引言和网络术语小词典 第2章 为什么要研究网络? 第3章 什么是网络? 第4章 网络的命名和查找 第5章 最常见的三维网络 第6章 三连接网络 第7章 四连接网络 第8章 具有三连接和四连接节点的网络 第9章 连接性高于四的网络 第10章 一些与三维网络相关的数学知识 第11章 穿插——策略和命名 第12章 作为特定合成目标的三维网络——晶体工程 第13章 计算工具
The properties of a material depend not only on the specific atoms and molecules it contains, but also on the arrangement of these in space. Many of these three-dimensional arrangements are described as "3D-nets" or "3D-networks". Molecule-Based Materials: The Structural Network Approach is about the synthesis, description, nomenclature and analysis of such nets and the relation of the nets to the physical properties of the materials. It introduces the mathematics, and includes a short guide to programs useful for retrieving, analysing and naming nets. Complete with illustrations and examples of coordination polymer and hydrogen bonded nets, this unique easy-to-read book examines all aspects of 3D nets and will undeniably prove itself valuable to newcomers, well-seasoned students and researchers working in crystallography, inorganic or organic chemistry. Audience (Under-)Graduate students and academic or industrial researchers in organic, inorganic or materials chemistry, as well as crystallography, pharmaceutical, "electronic" and "photonic" materials, and nanoscience. Contents Chapter 1. Introduction and a short dictionary of network terminology Chapter 2. Why bother with nets? Chapter 3. What is a net? Chapter 4. Naming the nets and finding them Chapter 5. The most common 3D-nets Chapter 6. Three-connected nets Chapter 7. Four-connected nets Chapter 8. Nets with both three- and four-connected nodes Chapter 9. Nets with higher connectivity than four Chapter 10. Some mathematics related to 3D-nets Chapter 11. Interpenetration - strategies and nomenclature Chapter 12. 3D-nets as specific synthetic targets - Crystal Engineering Chapter 13. Computational tools