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嘧啶-4,6-二羧酸锰(II):合成、结构、磁性及吸附研究

Manganese(II) pyrimidine-4,6-dicarboxylates: synthetic, structural, magnetic, and adsorption insights.

作者信息

Beobide Garikoitz, Wang Wen-guo, Castillo Oscar, Luque Antonio, Román Pascual, Tagliabue Giulia, Galli Simona, Navarro Jorge A R

机构信息

Departamento de Química Inorgánica, Facultad de Ciencia y Tecnología, Universidad del País Vasco, Apartado 644, E-48080 Bilbao, Spain.

出版信息

Inorg Chem. 2008 Jun 16;47(12):5267-77. doi: 10.1021/ic8002788. Epub 2008 May 21.

Abstract

A series of manganese(II) coordination polymers containing the bridging ligand pyrimidine-4,6-dicarboxylate (pmdc) have been prepared. The stoichiometries and structural features of these materials, which range from the one-dimensional (1D) chains in ([Mn(mu-pmdc)(H2O)3].2H2O)n (1) and ([Mn2(mu-pmdc)2(H2O)5].2H2O)n (2) to the two-dimensional layers in ([Mn(mu3-pmdc)(H2O)].H2O)n (3) or the three-dimensional porous network in ([Mn(pmdc)].2H2O)n (4), are extremely dependent on the synthetic conditions (i.e., temperature and solvent). In spite of the structural diversity of these systems, crystallographic studies revealed that the pmdc ligand typically displays a tetradentate mu-(kappaO,kappaN:kappaO'',kappaN') coordination mode with the carboxylate groups almost coplanar with the pyrimidine ring [as in compounds 1 and 2 and compound 5 described below)]. In compound 3, the pmdc moiety adopts a pentadentate mu3-(kappaO,kappaN:kappaO'',kappaN':kappaO) coordination mode. The thermal, magnetic, and adsorption properties of these systems were also studied. The results showed that these compounds behave as antiferromagnets as a consequence of efficient magnetic exchange through the pmdc bridges. Compound 4 possesses permanent porosity, as proved by gas sorption data (N2 at 77 K and CO2 at 293 K). Finally, the heteronuclear iron(II)/manganese(II) compound ([FeMn(mu-pmdc)2(H2O)5].2H2O)n (5), which is isomorphous to 2, was also prepared and fully characterized.

摘要

已制备出一系列含有桥联配体嘧啶 - 4,6 - 二羧酸酯(pmdc)的锰(II)配位聚合物。这些材料的化学计量比和结构特征各不相同,从一维链状结构的([Mn(μ - pmdc)(H₂O)₃]·2H₂O)ₙ(1)和([Mn₂(μ - pmdc)₂(H₂O)₅]·2H₂O)ₙ(2),到二维层状结构的([Mn(μ₃ - pmdc)(H₂O)]·H₂O)ₙ(3),再到三维多孔网络结构的([Mn(pmdc)]·2H₂O)ₙ(4),它们极其依赖于合成条件(即温度和溶剂)。尽管这些体系结构多样,但晶体学研究表明,pmdc配体通常呈现四齿μ -(κO,κN:κO'',κN')配位模式,其羧酸根基团几乎与嘧啶环共平面[如下文所述的化合物1、2和化合物5]。在化合物3中,pmdc部分采用五齿μ₃ -(κO,κN:κO'',κN':κO)配位模式。还研究了这些体系的热、磁和吸附性质。结果表明,由于通过pmdc桥进行有效的磁交换,这些化合物表现为反铁磁体。气体吸附数据(77K下的N₂和293K下的CO₂)证明化合物4具有永久孔隙率。最后,还制备并全面表征了与2同构的异核铁(II)/锰(II)化合物([FeMn(μ - pmdc)₂(H₂O)₅]·2H₂O)ₙ(5)。

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