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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Mesoporous metal oxides by vapor infiltration and atomic layer deposition on ordered surfactant polymer films
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Mesoporous metal oxides by vapor infiltration and atomic layer deposition on ordered surfactant polymer films

机译:通过有序表面活性剂聚合物薄膜上的蒸汽渗透和原子层沉积形成中孔金属氧化物

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摘要

Catalysis, chemical separations, and energy conversion devices often depend on well-defined mesoporous materials as supports or active component elements. Herein, we show that ordered assembled organic surfactant films can directly template porous inorganic solids with surface area exceeding 1000 m ~2/g by infusing the polymers with reactive inorganic vapors, followed by anneal. The specific surface area, pore size, chemical composition, and overall shape of the product material are tuned by choice of the polymer and precursor materials as well as the influsion and postinfusion treatment conditions. X-ray diffraction, infrared spectroscopy, and electron microscopy show that vapor infusion changes both the physical and chemical structure of the starting ordered polymer films, consistent with quantified trends in specific surface area and pore size distribution measured by nitrogen adsorption after film annealing. This method yields porous TiO _2 films, for example, that function as an anode layer in a dye-sensitized solar cell.
机译:催化,化学分离和能量转换装置通常依赖于定义明确的介孔材料作为载体或活性成分元素。本文中,我们表明有序组装的有机表面活性剂膜可以通过向聚合物中注入反应性无机蒸气,然后进行退火,直接对表面积超过1000 m〜2 / g的多孔无机固体进行模板化。产物材料的比表面积,孔径,化学组成和整体形状通过选择聚合物和前体材料以及注入和注入后的处理条件进行调整。 X射线衍射,红外光谱和电子显微镜显示,气相注入改变了起始有序聚合物薄膜的物理和化学结构,这与薄膜退火后通过氮吸附测量的比表面积和孔径分布的定量趋势一致。该方法产生例如多孔TiO _2膜,其在染料敏化太阳能电池中用作阳极层。

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