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极性、lambda(Λ)形状构筑单元在非中心对称无机结构中的作用。

The role of polar, lamdba (Λ)-shaped building units in noncentrosymmetric inorganic structures.

机构信息

Department of Chemistry, Northwestern University, 2145 Sheridan Road, Evanston, Illinois 60628-3113, USA.

出版信息

J Am Chem Soc. 2012 May 9;134(18):7679-89. doi: 10.1021/ja210984k. Epub 2012 Feb 15.

DOI:10.1021/ja210984k
PMID:22335338
Abstract

A methodology for the design of polar, inorganic structures is demonstrated here with the packing of lambda (Λ)-shaped basic building units (BBUs). Noncentrosymmetric (NCS) solids with interesting physical properties can be created with BBUs that lack an inversion center and are likely to pack into a polar configuration; previous methods to construct these solids have used NCS octahedra as BBUs. Using this methodology to synthesize NCS solids, one must increase the coordination of the NCS octahedra with maintenance of the noncentrosymmetry of the bulk. The first step in this progression from an NCS octahedron to an inorganic NCS solid is the formation of a bimetallic BBU. This step is exemplified with the compound CuVOF(4)(H(2)O)(7): this compound, presented here, crystallizes in an NCS structure with ordered, isolated Cu(H(2)O)(5) cations and VOF(4)(H(2)O) anions into Λ-shaped, bimetallic BBUs to form CuVOF(4)(H(2)O)(6)·H(2)O, owing to the Jahn-Teller distortion of Cu(2+). Conversely, the centrosymmetric heterotypes with the same formula MVOF(4)(H(2)O)(7) (M(II) = Co, Ni, and Zn) exhibit ordered, isolated VOF(4)(H(2)O) and M(H(2)O)(6) ionic species in a hydrogen bond network. CuVOF(4)(H(2)O)(7) exhibits a net polar moment while the heterotypes do not; this demonstrates that Λ-shaped BBUs give a greater probability for and, in this case, lead to NCS structures.

摘要

这里展示了一种设计极性无机结构的方法,即通过 λ(Λ)形基本构建单元(BBU)的堆积来实现。具有有趣物理性质的非中心对称(NCS)固体可以通过缺乏反演中心且可能堆积成极性结构的 BBU 来构建;以前构建这些固体的方法使用 NCS 八面体作为 BBU。使用这种方法合成 NCS 固体,必须增加 NCS 八面体的配位,同时保持大块的非中心对称性。从 NCS 八面体到无机 NCS 固体的这一进展的第一步是形成双金属 BBU。以化合物 CuVOF(4)(H(2)O)(7)为例,该化合物在此处结晶为 NCS 结构,其中有序、孤立的 Cu(H(2)O)(5)阳离子和 VOF(4)(H(2)O)阴离子堆积成 Λ 形双金属 BBU,形成 CuVOF(4)(H(2)O)(6)·H(2)O,这是由于 Cu(2+)的 Jahn-Teller 畸变。相反,具有相同化学式 MVOF(4)(H(2)O)(7)的中心对称杂型(M(II) = Co、Ni 和 Zn)在氢键网络中表现出有序、孤立的 VOF(4)(H(2)O)和 M(H(2)O)(6)离子物种。CuVOF(4)(H(2)O)(7)表现出净偶极矩,而杂型则没有;这表明 Λ 形 BBU 具有更大的概率,并且在这种情况下,导致 NCS 结构。

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