期刊文献+

氰基桥联配合物的溶剂热合成研究进展

Developments of solvothermal synthesis of cyano-bridged complexes
下载PDF
导出
摘要 介绍了以MCN(M=Na,K)和K3[M′(CN)6](M′=Fe,Co)为氰基来源的氰基桥联配合物溶剂热合成的研究进展。讨论了影响溶剂热合成氰基桥联合物的主要因素,如:反应条件、有机配体、氰基来源、平衡离子、溶剂种类及摩尔比等.最后指出了目前存在的问题,并对今后的研究趋势进行了展望. The recent progress of solvothermal synthesis of cyano-bridged complexes based on MCN(M = Na, K) and K3 [ M'( CN)6 ] (M' = Fe,Co) as the sources of cyano ligands was introduced in this paper. Then, the main factors influencing the solvothermal synthesis of cyano-bridged complexes were discussed, such as reaction conditions, organic ligands, cyano sources, counter-ions, solvents, molar ratio, and so on. Finally, the main problems at present were pointed, and the development trends were forecasted.
出处 《江苏科技大学学报(自然科学版)》 CAS 北大核心 2009年第3期217-224,共8页 Journal of Jiangsu University of Science and Technology:Natural Science Edition
基金 江苏省高校自然科学基金资助项目(07KJB150030)
关键词 氰基桥联 配合物 溶剂热 合成 cyano-bridged complexes solvothermal synthesis
  • 相关文献

参考文献46

  • 1Kaye S S,Long J R.Hydrogen storage in the dehydrated Prussian Blue analogues M3[Co(CN)6]2 (M=Mn,Fe,Co,Ni,Cu,Zn)[J].Journal of American Chemical Society,2005,127:6506-6507.
  • 2Ohba M,Okawa H.Synthesis and magnetism of multi-dimensional cyanide-bridged bimetallic assemblies[J].Coordination Chemistry Reviews,2000,198:313-328.
  • 3Goodwin A L,Kepert C J.Negative thermal expansion and low-frequency modes in cyanide-bridged framework materials[J].Physical Review B,2005,71:140301-140304.
  • 4Pretsch T,Chapman K W,Halder G J,et al.Dehydration of the nanoporous coordination framework ErIII[CoIII(CN)6]·4H2O:single crystal to single crystal transformation and negative thermal expansion in ErIII[CoIII(CN)6][J].Chemical Communications,2006:1857-1859.
  • 5Chapman K W,Hagenb M,Keperta C J,et al.Low energy phonons in the NTE compounds Zn(CN)2 and ZnPt(CN)6[J].Physical B,2006(385-386):60-62.
  • 6Chapman K W,Southon P D,Weeks C L.et al.Reversible hydrogen gas uptake in nanoporous Prussian Blue analogues[J].Chemical Communications,2005:3322-3324.
  • 7Chapman K W,Chupas P J,Kepert C J.Selective recovery of dynamic guest structure in a nanoporous Prussian Blue through in situ X-ray diffraction:a differential pair distribution function analysis[J].Journal of American Chemical Society,2005,127:11232-11233.
  • 8Goodwin A L,Chapman K W,Kepert C J.Guest-dependent negative thermal expansion in Nanoporous Prussian Blue analogues MIIPtIV(CN)6*x{H2O} (0<x ≤ 2; M =Zn,Cd)[J].Journal of American Chemical Society,2005,127:17980-17981.
  • 9Dominguez-Vera José M,Moreno José M,Colacio E.Alkali cation influence on copper cyanide solid-state architecture:two self-assembled copper(Ⅰ)-sodium and copper(Ⅰ)-potassium complexes showing 2D and 3D structures[J].Inorganica Chimica Acta,2004,357:611-614.
  • 10Heller M,Sheldrick W S.Isolated linear CuCN chains in a 2,3-dihydroxyquinoxaline host lattice[J].Zeitschrift Fur Anorganische Und Allgemeine Chemie,2001,627:569-571.

二级参考文献120

共引文献67

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