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具有非穿插α-Po拓扑的Gd-Cu异金属配聚物 [Gd2Cu3 (bpy)2(ip)6]·6H2O 被引量:2

A new 3-D Gd-Cu heterometallic polymer [Gd_2Cu_3(bpy)_2(ip)_6]·6H_2O
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摘要 水热合成了一个新颖的三维孔状Gd-Cu异金属配聚物[Gd2Cu3(bpy)2(ip)6]·6H2O(1)(bpy=2,2'-联吡啶,H2ip=间苯二酸),并对其结构进行了表征.该化合物属于三斜晶系,空间群为P1,具有非穿插α-Po拓扑结构及一维孔道,且六核链状水簇横跨在一维孔道中.此外,对该化合物的热稳定性及顺磁光谱进行了测试.
出处 《科学通报》 EI CAS CSCD 北大核心 2009年第17期2439-2443,共5页 Chinese Science Bulletin
基金 国家杰出青年科学基金(批准号:20725101) 国家重点基础研究发展计划(编号:2006CB932904) 福建省自然科学基金(编号:E0510030,2008F3120) 国家自然科学基金(批准号:50872133,20821061) 中国科学院知识创新工程青年人才领域前沿项目(编号:KJCX2.YW.H01)资助
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  • 1Xia J, Zhao B, Wang H S, et al. Two- and three-dimensional lanthanide complexes: synthesis, crystal structures, and properties. Inorg Chem, 2007, 46: 3450-3458.
  • 2Cheng J W, Zheng S T, Yang G Y. Diversity of crystal structure with different lanthanide ions involving in situ oxidation-hydrolysis reaction. Dalton Trans, 2007, 36: 4059-4066.
  • 3Zhu W H, Wang Z M, Gao S. Two 3D porous lanthanide-fumarate-oxalate frameworks exhibiting framework dynamics and lumines-cent change upon reversible de and rehydration. Inorg Chem, 2007, 46: 1337-1342.
  • 4Kitagawa S, Kitaura R, Noro S. Functional porous coordination polymers. Angew Chem Int Ed, 2004, 43: 2334-2375.
  • 5Liu G X, Zhu K, Chen H, et al. Two zinc(Ⅱ) supramolecular isomers of square grid networks formed by two flexible ligands: Syntheses, structures and nonlinear optical properties. CrystEngComm, 2008, 10: 1527-1530.
  • 6Ren P, Shi W, Cheng P. Synthesis and characterization of three-dimensional 3d-3d and 3d-4f heterometallic coordination polymers with high thermal stability. Cryst Growth Des, 2008, 8: 1097-1099.
  • 7Gao H L, Yi L, Ding B, et al. First 3D Pr(Ⅲ)-Ni(Ⅱ)-Na(Ⅰ) polymer and a 3D Pr(Ⅲ) open network based on pyri-dine-2,4,6-tricarboxylic acid. Inorg Chem, 2006, 45: 481-483.
  • 8Gu X J, Xue D F. 3D Coordination framework [Ln4(μ3-OH)2Cu6I5(IN)8(OAc)3] (IN = isonicotinate): employing 2D layers of lantha-nide wheel clusters and 1D chains of copper halide clusters. Inorg Chem, 2007, 46: 5349-5353.
  • 9Murugesu M, Clérac R, Anson C E, et al. Structure and magnetic properties of a giant Cu44II aggregate which packs with a zeotypic su-perstructure. Inorg Chem, 2004, 43: 7269-7271.
  • 10Zheng N F, Bu X H, Lu H W, et al. Crystalline superlattices from single-sized quantum dots. J Am Chem Soc, 2005, 127: 11963-11965.

同被引文献16

  • 1Pope M T, Mailer A. Chemie der polyoxometalate: Aktulle variationen tiber ein altes thema mit interdisziplinaren bezUgen. Angew Chem Int Ed, 1991, 103:56-70.
  • 2Hagrman P J, Hagrman D, Zubieta J. Organic-inorganic hybrid materials: From simple coordination polymers to organodiamine-templated molybdenum oxides. Angew Chem Int Ed, 1999, 38:2638-2684.
  • 3Katsoulis D E. A survey of applications of polyoxometalates. Chem Rev, 1998, 98:359-388.
  • 4Long D L, Burkholder E, Cronin L. Polyoxometalate clusters, nanostructures and materials: From self assembly to designer materials and devices. Chem Soc Rev, 2007, 36:105-121.
  • 5Pope M T, Mtiller A. Polyoxometalate chemistry: An old field with new dimensions in several disciplines. Angew Chem Int Ed Engl, 1991, 30:34-48.
  • 6Wang X L, Bi Y F, Chen B K, et al. Self-assembly of organic-inorganic hybrid materials constructed from eight-connected coordination polymer hosts with nano-tubes channel and polyoxometalate guests as templates. Inorg Chem, 2008, 47:2442-2448.
  • 7Tian A X, Ying J, Peng J, et al. Using flexible and rigid organic ligands to tune topology structures based on Keggin polyoxomatalates. Cryst Growth Des, 2010, 10:1104-1110.
  • 8Bentiss F, Lagrenee M. A new synthesis of symmetrical 2,5-disubstituted 1,3,4-oxadiazoles. J Heterocycl Chem, 1999, 36:1029-1032.
  • 9Sheldrick G M. A short history ofSHELX. Acta Crystallogr A, 2008, 64:112-122.
  • 10Brown I D, Altermatt D. Bond-valence parameters obtained from a systematic analysis of the inorganic crystal structure database. Acta Crystallogr B, 1985, 41:244-247.

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