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通过金属硝酸盐喷雾制备多种介孔金属氧化物。

Aerosol-spray diverse mesoporous metal oxides from metal nitrates.

作者信息

Kuai Long, Wang Junxin, Ming Tian, Fang Caihong, Sun Zhenhua, Geng Baoyou, Wang Jianfang

机构信息

1] College of Chemistry and Materials Science, The Key Laboratory of Functional Molecular Solids, Ministry of Education, Anhui Laboratory of Molecular-Based Materials, Center for Nano Science and Technology, Anhui Normal University, Wuhu 241000, China [2] Department of Physics, The Chinese University of Hong Kong, Shatin, Hong Kong SAR, China.

Department of Physics, The Chinese University of Hong Kong, Shatin, Hong Kong SAR, China.

出版信息

Sci Rep. 2015 Apr 21;5:9923. doi: 10.1038/srep09923.

Abstract

Transition metal oxides are widely used in solar cells, batteries, transistors, memories, transparent conductive electrodes, photocatalysts, gas sensors, supercapacitors, and smart windows. In many of these applications, large surface areas and pore volumes can enhance molecular adsorption, facilitate ion transfer, and increase interfacial areas; the formation of complex oxides (mixed, doped, multimetallic oxides and oxide-based hybrids) can alter electronic band structures, modify/enhance charge carrier concentrations/separation, and introduce desired functionalities. A general synthetic approach to diverse mesoporous metal oxides is therefore very attractive. Here we describe a powerful aerosol-spray method for synthesizing various mesoporous metal oxides from low-cost nitrate salts. During spray, thermal heating of precursor droplets drives solvent evaporation and induces surfactant-directed formation of mesostructures, nitrate decomposition and oxide cross-linking. Thirteen types of monometallic oxides and four groups of complex ones are successfully produced, with mesoporous iron oxide microspheres demonstrated for photocatalytic oxygen evolution and gas sensing with superior performances.

摘要

过渡金属氧化物广泛应用于太阳能电池、电池、晶体管、存储器、透明导电电极、光催化剂、气体传感器、超级电容器和智能窗户等领域。在许多这些应用中,大的表面积和孔体积可以增强分子吸附、促进离子转移并增加界面面积;复合氧化物(混合、掺杂、多金属氧化物和基于氧化物的杂化物)的形成可以改变电子能带结构、改变/增强电荷载流子浓度/分离,并引入所需的功能。因此,一种通用的合成多种介孔金属氧化物的方法非常有吸引力。在这里,我们描述了一种强大的气溶胶喷雾方法,用于从低成本硝酸盐合成各种介孔金属氧化物。在喷雾过程中,前驱体液滴的热加热驱动溶剂蒸发,并诱导表面活性剂导向的介观结构形成、硝酸盐分解和氧化物交联。成功制备了13种单金属氧化物和4组复合氧化物,其中介孔氧化铁微球在光催化析氧和气体传感方面表现出优异的性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e686/4404711/143e6e74c431/srep09923-f1.jpg

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