欢迎登录材料期刊网

材料期刊网

高级检索

配位聚合物中缠结网络的研究,近年来得到科学家的普遍关注.本文对配位聚合物中缠结网络的分类进行了综述,介绍了缠结网络研究的重要性和国内外缠结网络的研究工作,对互穿网络中的一维的分子梯互穿、二维折叠层的互穿、三维网络的互穿、混连接网络的互穿进行了详细介绍,列举了近年来这类缠结网络的研究成果和开发进展,并对其发展趋势进行了展望.

参考文献

[1] Christopher S.A.Fraser;Michael C.Jennings;Richard J.Puddephatt .An organometallic polyrotaxane and a new type of polyrotaxane architecture[J].Chemical communications,2001(14):1310-1311.
[2] Wang Z;Cheng Y;Liao C et al.The first supramolecular architectures assembled by infinite hydrogen-bonded,protonated nueleobase-water ribbons and unusual polyiodide frameworks[J].Crystal Engineering Communications,2001,50(03):1-6.
[3] Blake A J;Champness N R;Khlobystov A et al.Polycatenated copper(i) molecular ladders:a new structural motif in inorganic coordination polymers[J].Chemical Communications,1997,21:2027-2028.
[4] Zhu HF;Zhao W;Okamura T;Fan J;Sun WY;Ueyama N .Syntheses and crystal structures of 1D tubular chains and 2D polycatenanes built from the asymmetric 1-(1-imidazolyl)-4-(imidazol-1-ylmethyl) benzene ligand with metal saltsy[J].New Journal of Chemistry,2004(8):1010-1018.
[5] Zhao B;Cheng P;Chen X et al.Design and Synthesis of 3d-4f Metal-Based Zeolite-type Materials with a 3D Nanotubular Structure Encapsulated" Water" Pipe[J].Journal of the American Chemical Society,2004,126:3012-3013.
[6] Hoskins B F;Robson R;Slizys D A .An infinite 2D polyrotaxane network in Ag2 (bix)3(NO3) 2 (bix=1,4-bis (imidazol-l-ylmethyl)benzene)[J].Journal of the American Chemical Society,1997,119:2952-2953.
[7] Fan J;Sun W Y;Okamura T et al.Novel Metal-Organic Frameworks with Specific Topoiogy Formed through Noncovalent Br…Br Interactions in the Solid State[J].Grouth & Design,2004,4(03):579-584.
[8] Carlucci L;Ciani G;Proserpio DM .Parallel and inclined (1D -> 2D) interlacing modes in new polyrotaxane frameworks [M-2(bix)(3)(SO4)(2)] [M = Zn(II), Cd(II); Bix=1,4-bis(imidazol-1-ylmethyl)benzene][J].Crystal growth & design,2005(1):37-39.
[9] Sun YQ;Zhang J;Ju ZF;Yang GY .Two-dimensional noninterpenetrating transition metal coordination polymers with large honeycomb-like hexagonal cavities constructed from a carboxybenzyl viologen ligand[J].Crystal growth & design,2005(5):1939-1943.
[10] HuS;Chen J C;TongM L et al.Cu2+-Mediated Dehydrogenative Coupling and Hydroxylation of an N-Heterocyclie Ligand:From Generation of a New Tetratopic Ligand to the Designed Assembly of Three-Dimensional Copper (i) Coordination Polymers[J].Angewandte Chemie International Edition,2005,44:5471-5475.
[11] ZhangX M;Chen X M .A New Porous3-DFramework Constructed From Fivefold Parallel Interpenetration of 2-D (6,3) Nets:A MixedValence Copper (Ⅰ,Ⅱ) Coordination Polymer[CuI《,2》 CuII(4,4-bpy)《,2》 (pydc)《,2》]@4 H2O[J].European Journal of Inorganic Chemistry,2003,3:413-417.
[12] Ming-Hua Zeng;Wei-Xiong Zhang;Xian-Zhong Sun;Xiao-Ming Chen .Spin Canting and Metamagnetism in a 3D Homometallic Molecular Material Constructed by Interpenetration of Two Kinds of Cobalt(II)-Coordination-Polymer Sheets[J].Angewandte Chemie,2005(20):3079-3082.
[13] Lucia Carlucci;Gianfranco Ciani;Davide M. Proserpio;Angelo Sironi .A three-dimensional racemate. Interpenetration of two enantiomeric networks of the SrSi2 topological type in the polymeric complex [Ag2(2,3-Me2pyz)3][SbF6]2(2,3-Me2pyz = 2,3-dimethylpyrazine)[J].Chemical communications,1996(11):1393-1394.
[14] Li H;Eddaoudi M;OKeeffe M et al.Design and synthesis of an exceptionally stable and highlyporous metal-organic framework[J].Nature,1999,402:276-279.
[15] Eddaoudi M;Kim J;Rosi N et al.Systematic Design of Pore Size and Functionality in IsoreticularMOFs and Their Application in Methane Storage[J].Science,2002,295:469-472.
[16] Ma JP;Dong YB;Huang RQ;Smith MD;Su CY .Spontaneously resolved chiral three-fold interpenetrating diamondoidlike Cu(II) coordination polymers with temperature-driven crystal-to-crystal transformation[J].Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics,2005(18):6143-6145.
[17] Wang R H;Han L;JiangF L et al.Three Novel Cadmium(Ⅱ) Complexes from Different Conformational 1,1-Biphenyl-3,3,-dicarboxylate[J].Crystal Growth and Design,2005,5(01):129-135.
[18] Brendan F. Abrahams;Stuart R. Batten;Hasan Hamit;Bernard F. Hoskins;Richard Robson .A wellsian three-dimensional racemate: eight interpenetrating, enantiomorphic (10,3)-a nets, four right- and four left-handed[J].Chemical communications,1996(11):1313-1314.
[19] Li X;Cao R;Sun D et al.Syntheses and Characterizations of Zinc (Ⅱ) Compounds Conmining Three-Dimensional Interpenetrating Diamondoid Networks Constructed by Mixed Ligands[J].Crystal Growth and Design,2004,4(04):775-780.
[20] Thomas Devic;Christian Serre;Nathalie Audebrand;Jerome Marrot;Gerard Ferey .MIL-103, A 3-D Lanthanide-Based Metal Organic Framework with Large One-Dimensional Tunnels and A High Surface Area[J].Journal of the American Chemical Society,2005(37):12788-12789.
[21] Xinlong Wang;Chao Qin;Yangguang Li;Changwen Hu;Lin Xu .Syntheses,Structures,and Photoluminescence of a Novel Class of d~10 Metal Complexes Constructed from Pyridine-3,4-dicarboxylic Acid with Different Coordination Architectures[J].Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics,2004(6):1850-1856.
[22] Lee E Y;Jang S Y;Suh M P .Muhifunctionality and Crystal Dynamics of a Highly Stable,Porous Metal Organic Framework [Zn《,4》O (NTB)《,2》][J].Journal of the American Chemical Society,2005,127:6374-6381.
[23] De-Liang Long;Robert J.Hill;Alexander J.Blake .Anion Control over Interpenetration and Framework Topology in Coordination Networks Based on Homoleptic Six-Connected Scandium Nodes[J].Chemistry: A European journal,2005(5):1384-1391.
[24] Lucia Carlucci;Gianfranco Ciani;Davide M. Proserpio;Silvia Rizzato .New examples of self-catenation in two three-dimensional polymeric co-ordination networks[J].Journal of the Chemical Society, Dalton Transactions.Inorganic Chemistry,2000(21):3821-3827.
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%