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MOLECULE-BASED MATERIALS----The Structural Network Approach Table of 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 6.1. Some remarks concerning the building blocks 6.1.1. Link lengths and angles 6.1.2. Torsion angles, ui, between consecutive nodes 6.1.3. The net and the tecton 6.2. Uninodal three-connected nets . 6.2.1. The 123~twtnet 6.2.2. The (10,3)-c 103-bto net 6.2.3. The (10,3)-dor 103-utp net 6.2.4. Other uninodal (10,3)-nets 6.2.5. The (8,3)-a and (8,3)-b nets (83-eta and 83-etb) 6.2.6. The (8210)-a, LiGe or 82.10-lignet 6.2.7. The4.142-dia-fnet 6.2.8. The4.142-dia-gnet Ill 6.2.9. The4.8.10-lvt-anet 6.3. Binodal three-connected nets.... 6.3.1. The (6.102)(62.10)-nofnet..ll4 6.3.2. The (83)(83)-nojnet 6.3.3. The (103)(6.102)rnoh net.. 6.3.4. The (82.10) (82.10)-nod or (8210)-bnet 6.3.5. The (6.122)(6.102)2-nob netl 6.3.6. Two uniform binodal nets: (9,3)-a: (93)(93)-nta and (9,3)-b 93)(93)2-ntb 6.4. Trinodal three-connected nets... 6.4.1. The (4.122)(4.122)(4.122)-motanet 6.4.2. The (72.8)2(72.8)(7.123)-noe net 6.4.3. (4.122)(4.122)2(123)2-"net 10" 6.5. Multinodal three-connected nets 6.5.1. The (83)(83)(82.10)(82.10)(83)(83)-nos net, a hexanodal net. 6.6. Summary of three-connected nets Chapter 7 Four-connected nets Chapter 8 Nets with both three- and fourconnected nodes 8.1. Alternating nets with stoichiometry (3-conn)4(4-conn)3(ns3/ns4 = 4/3) 8.1.1. Boracite, (63)4(62.84)3-bor and twisted boracite (63)4(62.82.102)}-tbo. 8.1.2. The Pt3O4 or (83)4(86)3-pto net 8.1.3. The C3N4 or (83) 4(86) 3-ctn net 8.1.4. Other alternating nets with stoichiometry (3-conn)4(4-conn)3 8.2. Nets with 1:1 stoichiometery (ns3lns4 = 1) ¡£¡£¡£¡£¡£ Chapter 9 Nets with higher connectivity than four Chapter 10 Some mathematics related to 3D-nets 10.1. Nets, Polyhedra and Topology 10.2. Genus, Tilings and Nets 10.2.1. A classification of nets in terms of their genus 197 10.2.2. Comparison to Wells Z, classification 199 10.2.3. Nets as tilings and the concept of transitivity 202 10.2.4. The analysis of the voids as the dual of a net 204 10.2.5. The pqrs to srqp relation of dual nets 206 10.3. Glossary 207 Chapter 11 Interpenetration - strategies and nomenclature Chapter 12 3D-nets as specific synthetic targets-Crystal Engineering 12.1. Choice of interaction (hydrogen bonds, coordinative bonds etc) 227 12.1.1. Covalent bonds 227 12.1.2. Metal-ligand bonds (coordination bonds) 227 12.1.3. Hydrogen bonds 228 12.1.4. Connecting the building blocks 230 12.2. Reaction conditions 231 12.2.1. Solvents and concentrations 12.2.2. Templating agents 231 12.2.3. Methods of crystallization232 12.2.4. Hydrothermal or solvothermal methods 233 12.2.5. Grinding and kneading, mechanochemical methods 234 12.3. Synthesis of chiral, porous, 3D nets 235 12.3.1. Intrinsic chiral nets and induced chiral nets 235 12.3.2. Interpenetration 237 12.3.3. Some chiral nets other than srs 238 12 A. Some notes on polymorphism and supramolecular isomerism 239 12.5. Specific properties of nets and their analysis 241 Chapter 13 Computational tools 13.1.1. Mercury 246 13.1.2. Diamond 248 13.1.3. Crystal Maker 251 13.1.4.RPluto 251 13.2. Software packages that can search for a nets 251 13.2.1. OLEX 251 13.2.2. TOPOS 254 http://www.namipan.com/d/b8985313d3998ebbf8e54726fce377375a172cc9d2bb6502 [ Last edited by mashulin on 2008-12-14 at 16:31 ] |
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