期刊文献+

一个含芳乙烯基的锌配合物的结构和荧光性质

Structure and Luminescence of One Zinc Coordination Compound with Artomic Ethenyl Groups
下载PDF
导出
摘要 含芳乙烯基的O,N-混配体(H_2L和bpeb)与锌盐通过溶剂热方法合成了一个新颖的配位聚合物[Zn_2L_2(bpeb)]n,并对新化合物进行了X-射线单晶衍射、热重、红外、荧光等表征。晶体结构分析表明,柔性的O-配体L2-与Zn^(2+)离子配位,形成了有趣的P型(右手)和M型(左手)两种不同的螺旋结构,再通过N-配体bpeb桥联金属形成多孔的二维层,进一步形成了互锁的三维超分子结构。常温下的荧光测试表明,在波长370 nm光激发下,固体在494 nm处有最大荧光发射,因此新物质是一种潜在的蓝色荧光固体材料。 One novel coordination polymer,[Zn2L2( bpeb) ]n,was synthesized from O,N-mixed ligands with artomic ethenyl groups( H2L and bpeb) and Zn( NO3)2·6H2O under solvothermal conditions,and characterized by X ray single crystal diffraction,thermogravimetry analysis,infrared spectrum,fluorescence spectrum,and so on. Crystal structure analysis revealed that the flexible L2-ligands coordinated with Zn atoms generate one-dimensional( 1D) ladders of [Zn2L2]nintegrating M( left-handed) or P( right-handed) helical information,and the N-ligands bridge zinc ions assembled 2D porous 6-connected coordination polymeric layers, which organized an interesting 3D interlocked supramolecular architecture. The new compound showed photoluminescence with emission maximum at 494 nm.
出处 《广州化工》 CAS 2017年第5期29-32,共4页 GuangZhou Chemical Industry
基金 重庆市教委科学技术研究项目(No.KJ130638)
关键词 配位聚合物 螺旋 晶体结构 荧光 artomic ethenyl groups crystal structure photoluminescence zinc coordination polymer
  • 相关文献

参考文献2

二级参考文献27

  • 1Leong, W. L.; Vittal, 1. 1. One-dimensional coordination polymers: complexity and diversity in structures, properties, and applications. Chem. Rev. 2011, 111,688-764.
  • 2Piguet, C; Borkovec, M.; Hamacek, J.; Zeckert, K. Strict self-assembly of polymetallic helicates: the concepts behind the semantics. Coord. Chem. Rev. 200s, 249, 705-726.
  • 3Moulton, B.; Zaworotko, M. J. From molecules to crystal engineering: supramolecular isomerism and polymorphism in network solids. Chem. Rev. 200t, 101, 1629-1658.
  • 4Shi, Z.; Feng, S. H.; Gao, S.; Zhang, L.; Yang, G.; Hua, J. inorganic-organic hybrid materials constructed from [(V02)(HPO.)1". helical chains and [M(4,4'-bpyhf+(M = Co, Ni) fragments. Angew. Chem., Int. Ed. 2000,39,2325-2327.
  • 5Schmuck, C. Molecules with helical structure: how to build a molecular spiral staircase. Angew. Chem., Int. Ed. 2003,42,2448-2452.
  • 6Piguet, c.; Bemardinelli, G.; Hopfgartner, G. Helicates as versatile suprarnolecular complexes. Chem. Rev. 1997,97,2005-2062.
  • 7McMorran, O. A. Ag(l)-based tectons for the construction of helical and meso-helical hydrogen-bonded coordination networks. Inorg. Chem. 2008, 47, 592-601.
  • 8Austria, c.; Zhang, J.; Valle, H.; Zhang, Q. c.; Chew, E.; Nguyen, O. T.; Gu, J. Y; Feng, P. Y; Bu, X. H. Amine-controlled assembly of metal-sulfite architecture from 10 chains to 3D framework. Inorg. Chem. 2007,46,6283-6290.
  • 9Maggard, P. A.; Stem, C. L.; Poeppelmeier, K. R. Understanding the role of helical chains in the formation of noncentrosymmetric solids. J. Arn. Chem.Soc.200t, 123,7742-7743.
  • 10Ciurtin, D. M.; Pschirer, N. G.; Smith, M. D.; Bunz, U. H F.; zur Loye, H. C. Two luminescent coordination polymers with a triple-helix structure: HgX2(C"H2.N2)'CH2Ch(X = CI and Br). Chem. Mater. 2001, 13,2743-2745.

共引文献2

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部