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磷酸锌骨架中的维度变化以及次级构筑单元内部与之间的空隙封装

Dimensionality Alteration and Intra- versus Inter-SBU Void Encapsulation in Zinc Phosphate Frameworks.

作者信息

Dar Aijaz A, Bhat Gulzar A, Murugavel Ramaswamy

机构信息

Department of Chemistry, Indian Institute of Technology Bombay , Powai, Mumbai 400076, India.

出版信息

Inorg Chem. 2016 Jun 6;55(11):5180-90. doi: 10.1021/acs.inorgchem.5b02949. Epub 2016 May 9.

Abstract

4,4'-Bipyridine-N-oxide (BIPYMO, 1), a less commonly employed coordination polymer linker, has been used as a ditopic spacer to bridge double-four-ring (D4R) zinc phosphate clusters to form novel framework coordination polymers. Zinc phosphate framework compounds [Zn4(X-dipp)4(BIPYMO)2]n·2MeOH [X = H (2), Cl (3), Br (4), I (5); dipp = 2,6-diisopropylphenyl phosphate] have been obtained by treating a methanol solution of zinc acetate with X-dippH2 and BIPYMO (in a 1:1:1 molar ratio) at ambient conditions. Framework phosphates 2-5 can also be obtained by treating the preformed D4R cubanes [Zn(X-dipp)(DMSO)]4 with required quantities of BIPYMO in methanol. Single-crystal X-ray diffraction studies reveal that these framework solids are two-dimensional (2D) networks as opposed to the diamondoid networks obtained when the parent unoxidized 4,4'-bipyridine is used as the linker (Inorg. Chem. 2014, 53, 8959). The two types of voids (viz., smaller intra-D4R and larger inter-D4R) present in these framework solids can be utilized for different types of encapsulation processes. For example, the in situ generated 2D framework 2 encapsulates fluoride ions accompanied by a change in the dimensionality of the framework to yield {[(nC4H9)4N][F@(Zn4(dipp)4(BIPYMO)2)]}n (6). The three-dimensional framework 6 represents the first structurally characterized example of a fluoride-ion-encapsulated polymeric coordination compound or a metal-organic framework. The possibility of utilizing inter-D4R voids as hosts for small organic molecules has been explored by treating in situ generated 2 with a series of organic molecules of appropriate size. Framework 2 has been found to be a selective host for benzil and not for other structurally similar molecules such as benzoquinone, benzidine, anthracene, naphthalene, α-pyridoin, etc. The benzil-occluded isolated framework [benzil@{Zn4(dipp)4(BIPYMO)2}]n (7) has been isolated as single crystals, and its crystal structure determination revealed the binding of benzil molecules to the framework through strong π-π interactions.

摘要

4,4'-联吡啶-N-氧化物(BIPYMO,1)是一种较少使用的配位聚合物连接体,已被用作双齿间隔基来桥连双四环(D4R)磷酸锌簇,以形成新型骨架配位聚合物。通过在环境条件下用X-dippH2和BIPYMO(摩尔比为1:1:1)处理醋酸锌的甲醇溶液,得到了磷酸锌骨架化合物[Zn4(X-dipp)4(BIPYMO)2]n·2MeOH [X = H (2),Cl (3),Br (4),I (5);dipp = 2,6-二异丙基苯基磷酸酯]。骨架磷酸盐2-5也可以通过在甲醇中用所需量的BIPYMO处理预制的D4R立方烷[Zn(X-dipp)(DMSO)]4来获得。单晶X射线衍射研究表明,这些骨架固体是二维(2D)网络,这与使用母体未氧化的4,4'-联吡啶作为连接体时获得的松香烷网络相反(《无机化学》,2014年,53卷,8959页)。这些骨架固体中存在的两种类型的空隙(即较小的D4R内空隙和较大的D4R间空隙)可用于不同类型的封装过程。例如,原位生成的二维骨架2封装氟离子,同时骨架的维度发生变化,生成{[(nC4H9)4N][F@(Zn4(dipp)4(BIPYMO)2)]}n (6)。三维骨架6代表了第一个结构表征的氟离子封装的聚合物配位化合物或金属有机骨架的例子。通过用一系列大小合适的有机分子处理原位生成的2,探索了利用D4R间空隙作为小有机分子主体的可能性。已发现骨架2是联苯甲酰的选择性主体,而不是其他结构相似的分子,如苯醌、联苯胺、蒽、萘、α-吡啶酮等。已分离出联苯甲酰封闭的孤立骨架[联苯甲酰@{Zn4(dipp)4(BIPYMO)2}]n (7)的单晶,其晶体结构测定揭示了联苯甲酰分子通过强π-π相互作用与骨架结合。

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