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基于配体的新型银(I)-高铼酸盐(VII)氧化物/有机杂化固体结构和光学性质的修饰。

Ligand-based modification of the structures and optical properties of new silver(I)-rhenate(VII) oxide/organic hybrid solids.

机构信息

Department of Chemistry, North Carolina State University, Raleigh North Carolina 27695-8204, USA.

出版信息

Inorg Chem. 2009 Dec 7;48(23):11265-76. doi: 10.1021/ic901749r.

Abstract

A new series of silver(I)-rhenate(VII) hybrids was systematically prepared under hydrothermal conditions from eight different N-donor organic ligands (isonicotinate = inca, pyrazine-2-carboxylate = pzc, 1,2,4-triazole = tro, pyridazine = pda, 4,4'-bipyridine = bpy, 1,2-bis(4-pyridyl)-ethane = dpa, 2,3-bis(2-pyridyl)pyrazine = bpp, and tetra-2-pyridinylpyrazine = tpp), and their resulting structures and optical properties were investigated. The reactions targeted a 1:1 molar ratio of Ag/Re, and new hybrid solids were prepared with the compositions Ag(bpp)ReO(4) (1), Ag(tpp)ReO(4) x H(2)O (2), Ag(Hinca)(2)ReO(4) x H(2)O (3), Ag(tro)ReO(4) (4), Ag(pda)ReO(4) x 1/2 H(2)O (5), Ag(Hpzc)ReO(4) (6), Ag(2)(Hpzc)(pzc)(H(2)O)ReO(4) (7), Ag(bpy)ReO(4) (8), and Ag(dpa)(2)ReO(4) (9). Hybrid solids 1, 2, and 3 each exhibit low-dimensional structures, consisting of Ag(2)(bpp)(4) and Ag(2)(Hinca)(4) dimers in 1 and 3, respectively, and Ag(tpp)(n+) chains in 2. Hybrid solids 4 and 5 contain a Ag(tro) chain and a Ag(3)(pda)(3) cyclic trimer, respectively, that are both ReO(4)-bridged into layered structures. Both 6 and 8 consist of ligand-pillared "AgReO(4)" layers, while 7 is a Re-deficient analogue of 6 that contains ligand-pillared Ag(2)(H(2)O)ReO(4) layers where H(2)O replaces the missing ReO(4)(-) anion. The hybrid networks of 8 and 9 are interpenetrating, owing to the length of the bpy and dpa ligands, and consist of bpy-pillared "AgReO(4)" layers and ReO(4)-filled Ag(dpa)(2) diamond-type networks that are 2-fold and 6-fold interpenetrating, respectively. Their optical properties and thermal stabilities were investigated using UV-vis transmittance, X-ray photoelectron spectroscopy, and thermogravimetric analysis. The measured properties were analyzed with respect to the varying structural modifications. The Ag-ReO(4) network dimensionalities, Ag coordination environments, and the ligand lengths and geometries are found to play important roles in the absorption coefficients, bandgap sizes, and whether the structure collapses softly to give condensed AgReO(4), respectively.

摘要

一个新的系列的银(I)-铼(VII)的混合物是在水热条件下从 8 种不同的 N-供体有机配体(异烟酸= INCA、吡嗪-2-羧酸= PZC、1,2,4-三唑= tro、哒嗪= PDA、4,4'-联吡啶= BPY、1,2-双(4-吡啶基)-乙烷= DPA、2,3-双(2-吡啶基)吡嗪= BPP、和四-2-吡啶基吡嗪= TPP)系统地制备,研究了它们的结构和光学性质。反应的目标是 Ag/Re 的摩尔比为 1:1,并用组成 Ag(bpp)ReO(4)(1)、Ag(tpp)ReO(4)x H(2)O(2)、Ag(Hinca)(2)ReO(4)x H(2)O(3)、Ag(tro)ReO(4)(4)、Ag(pda)ReO(4)x 1/2 H(2)O(5)、Ag(Hpzc)ReO(4)(6)、Ag(2)(Hpzc)(pzc)(H(2)O)ReO(4)(7)、Ag(bpy)ReO(4)(8)和 Ag(dpa)(2)ReO(4)(9)的新的混合固体来制备。混合固体 1、2 和 3 各自表现出低维结构,由[Ag(2)(bpp)(4)](2+)和[Ag(2)(Hinca)(4)](2+)分别在 1 和 3 中的二聚体,以及[Ag(tpp)](n)(n+)在 2 中的链组成。混合固体 4 和 5 分别含有一个[Ag(tro)](+)链和一个[Ag(3)(pda)(3)](3+)环状三聚体,它们都是由 ReO(4)桥接成层状结构。6 和 8 均由配体支柱的“AgReO(4)”层组成,而 7 是 6 的缺铼类似物,其中配体支柱的[Ag(2)(H(2)O)ReO(4)](+)层中取代了缺失的 ReO(4)(-)阴离子。由于 BPY 和 DPA 配体的长度,8 和 9 的混合网络是相互贯穿的,它们由 BPY 支柱的“AgReO(4)”层和充满 ReO(4)的[Ag(dpa)(2)](+)金刚石型网络组成,它们分别是 2 倍和 6 倍相互贯穿。利用紫外可见透射光谱、X 射线光电子能谱和热重分析研究了它们的光学性质和热稳定性。测量的性质与不断变化的结构修饰有关。Ag-ReO(4)网络的维度、Ag 配位环境以及配体的长度和几何形状被发现对吸收系数、能带隙大小以及结构是否会软塌陷形成凝聚的 AgReO(4)分别起着重要作用。

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