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二维TiO的溶胶-凝胶合成:通过羧酸盐配体导向缩合实现钛氧烷氧基乙酸酯配合物的自组装。

Sol-gel synthesis of 2-dimensional TiO: self-assembly of Ti-oxoalkoxy-acetate complexes by carboxylate ligand directed condensation.

作者信息

Sui Ruohong, Deering Connor E, Prinsloo Rohen, Lavery Christopher B, Chou Nancy, Marriott Robert A

机构信息

Chemistry Department, University of Calgary, 2500 University Drive, Northwest, Calgary, Alberta T2L 4N1, Canada.

出版信息

Faraday Discuss. 2021 Apr 1;227:125-140. doi: 10.1039/c9fd00108e. Epub 2020 Dec 9.

Abstract

2-Dimensional (2D) metal oxides have many potential industrial applications including heterogeneous catalysis, water splitting, renewable energy conversion, supercapacitor applications, biomaterials, gas separation and gas storage. Herein we report a simple and scalable method for the preparation of 2D TiO nanostructures by reaction of titanium isopropoxide with acetic acid at 333 K in isopropanol, followed by calcination at 673 K to remove the organic ligands. Both the products and reaction intermediates have been studied using electron microscopy, X-ray diffraction, N physisorption, nuclear magnetic resonance, thermogravimetric analysis, and X-ray photoelectron, Raman, and infrared spectroscopy. The anisotropic condensation of the planar TiO(OPr)(OAc) complex is believed to be responsible for the formation of the 2D structure, where OPr and OAc represent isopropoxide and acetate ligands, respectively. This research demonstrates that the metal complexes are promising building blocks for desired architectures, and the self-assembly of an acetate bidentate ligand is a versatile tool for manipulating the shape of final products.

摘要

二维(2D)金属氧化物具有许多潜在的工业应用,包括多相催化、水分解、可再生能源转换、超级电容器应用、生物材料、气体分离和气体储存。在此,我们报道了一种简单且可扩展的方法,通过异丙醇钛与乙酸在333K下于异丙醇中反应制备二维TiO纳米结构,随后在673K下煅烧以去除有机配体。使用电子显微镜、X射线衍射、N物理吸附、核磁共振、热重分析以及X射线光电子能谱、拉曼光谱和红外光谱对产物和反应中间体进行了研究。平面TiO(OPr)(OAc)配合物的各向异性缩合被认为是二维结构形成的原因,其中OPr和OAc分别代表异丙氧基和乙酸根配体。这项研究表明,金属配合物是构建所需结构的有前途的基石,并且乙酸双齿配体的自组装是操纵最终产物形状的通用工具。

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