Thermal decomposition of inclusion compounds on the base of the metal–organic framework [Zn4(DMF)(ur)2(ndc)4]Part II

被引:0
作者
Vladimir A. Logvinenko
Sergey A. Sapchenko
Vladimir P. Fedin
机构
[1] Siberian Branch of Russian Academy of Sciences,Nikolaev Institute of Inorganic Chemistry
[2] Novosibirsk State University,undefined
来源
Journal of Thermal Analysis and Calorimetry | 2016年 / 123卷
关键词
Coordination compounds; Inclusion compounds; Kinetic stability; Metal–organic frameworks; Non-isothermal kinetics;
D O I
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中图分类号
学科分类号
摘要
Inclusion compounds based on metal–organic frameworks (MOFs) have promising practical applications in gas storage, the separation and fine purification of substances and also in catalysis. These MOFs are crystalline compounds consisting of metal ions coordinated by bridging organic ligands with the formation of porous structures. Here, we study the thermal stability of two inclusion compounds on the base of the new framework: [Zn4(DMF)(ur)2(ndc)4]·5DMF·H2O and [Zn4(DMF)(ur)2(ndc)4]·4ferrocene (ndc2−= 2,6-naphthalenedicarboxylate, ur = hexamethylenetetramine, DMF = N,N′-dimethylformamide, ferrocene = Fe(C5H5)2). The first compound decomposition includes water removal, DMF removal and complex pyrolysis of the empty framework; the kinetics of DMF release is studied. The second compound does not lose the guest molecules before full pyrolysis. The stability of the inclusion compounds with DMF guest molecules on the base of the different host frameworks is considered.
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页码:697 / 702
页数:5
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  • [1] Fromm KM(2008)Coordination polymer networks with s-block metal ions Coord Chem Rev 252 856-885
  • [2] Kirillov AM(2011)Hexamethylenetetramine: an old new building block for design of coordination polymers Coord Chem Rev 255 1603-1622
  • [3] Mani-Biswas M(2012)Insights from theoretical calculations on structure, dynamics, phase behavior and hydrogen sorption in nanoporous metal organic frameworks Comput Theor Chem 987 42-56
  • [4] Tahir Cagin T(2011)Investigation of desolvation process in lanthanide dinicotinates J Therm Anal Calorim 103 633-639
  • [5] Lyszczek R(2011)Exceptional thermal stability and thermodynamic properties of lithium based metal–organic framework J Therm Anal Calorim 103 373-380
  • [6] Iwan M(2012)Heat capacities and thermodynamic properties of M(HBTC)(4,4′-bipy)·3DMF (M=Ni and Co) J Therm Anal Calorim 110 949-954
  • [7] Jiang C-H(2007)Isoreticular homochiral porous metal–organic structures with tunable pore sizes Inorg Chem 46 6843-6845
  • [8] Song L-F(2010)Modular homochiral porous coordination polymers: rational design, enantioselective guest exchange sorption and ab initio calculations of host–guest interactions Chem Eur J 10 348-356
  • [9] Jiao C-L(2013)Heat capacities and thermodynamic of Co(3,5-PDC)(H J Therm Anal Calorim 112 1579-1585
  • [10] Zhang J(2013)O) J Therm Anal Calorim 112 1415-1421