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深入研究 mg 配位和超分子框架中的 SBU 凝聚:实验与理论的综合研究。

Insight into the SBU condensation in mg coordination and supramolecular frameworks: a combined experimental and theoretical study.

机构信息

Department of New Architectures in Materials Chemistry, Instituto de Ciencia de Materiales de Madrid, ICMM-CSIC, c/Sor Juana Inés de la Cruz, 3, 28049 Madrid, Spain.

出版信息

J Am Chem Soc. 2012 Mar 14;134(10):4762-71. doi: 10.1021/ja210564a. Epub 2012 Mar 2.

Abstract

This work is to emphasize the influence of the synthetic procedures in the isolation of different coordination polymers that coexist under hydro-/solvothermal conditions. An experimental and theoretical study in the Mg(2+):4,4'-(hexafluoroisopropylidene)bis(benzoic acid):1,10-phenantroline system has been carried out. Computational studies have determined the relative energies for those compounds that coexist under certain hydrothermal conditions, and have helped to identify the driving forces for the formation of the different phases. The five new compounds belong to five different structural types: AEPF-14, which presents two polymorphs (α- and β-) ([Mg(H(2)O)(4)(phen)(2)]L), AEPF-15 ([Mg(HL)(2)(phen)]) and AEPF-16 ([Mg(H(2)O)(2)(L)(phen)]) are both 1D MOFs (AEPF-16 with a helical structure), and AEPF-17 ([Mg(H(2)O)(L)(phen)]) with a 2D structure. Hydrogen bond interactions found in the five compounds have been taken into account to study the topology of their supramolecular nets. Finally, dehydration studies performed on AEPF-14 (α- and β-) and AEPF-16 have shown that the topological type of their supramolecular networks determines the structural changes that take place during the dehydration processes of these Mg compounds.

摘要

这项工作旨在强调在水/溶剂热条件下共存的不同配位聚合物的合成程序的影响。已经对 Mg(2+):4,4'-(六氟异丙叉)双(苯甲酸):1,10-菲咯啉体系进行了实验和理论研究。计算研究确定了在某些水热条件下共存的那些化合物的相对能量,并有助于确定形成不同相的驱动力。这五个新化合物属于五种不同的结构类型:AEPF-14,其呈现两种多晶型物(α-和β-)([Mg(H(2)O)(4)(phen)(2)]L),AEPF-15([Mg(HL)(2)(phen)])和 AEPF-16([Mg(H(2)O)(2)(L)(phen)])都是一维 MOFs(AEPF-16 具有螺旋结构),以及具有二维结构的 AEPF-17([Mg(H(2)O)(L)(phen)])。考虑到五种化合物中发现的氢键相互作用,研究了它们超分子网络的拓扑结构。最后,对 AEPF-14(α-和β-)和 AEPF-16 进行的脱水研究表明,它们超分子网络的拓扑类型决定了这些 Mg 化合物在脱水过程中发生的结构变化。

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