首页> 外文OA文献 >Rose-like monodisperse bismuth subcarbonate hierarchical hollow microspheres : one-pot template-free fabrication and excellent visible light photocatalytic activity and photochemical stability for NO removal in indoor air
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Rose-like monodisperse bismuth subcarbonate hierarchical hollow microspheres : one-pot template-free fabrication and excellent visible light photocatalytic activity and photochemical stability for NO removal in indoor air

机译:玫瑰状单分散次碳酸铋铋空心微球:一锅法无模板制备,优异的可见光光催化活性和光化学稳定性,可去除室内空气中的NO

摘要

Rose-like monodisperse hierarchical (BiO) 2CO 3 hollow microspheres are fabricated by a one-pot template-free method for the first time based on hydrothermal treatment of ammonia bismuth citrate and urea in water. The microstructure and band structure of the as-prepared (BiO) 2CO 3 superstructure are characterized in detail by X-ray diffraction, Raman spectroscopy, Fourier transform-infrared spectroscopy, transmission electron microscopy, scanning electron microscopy, N 2 adsorption-desorption isotherms, X-ray photoelectron spectroscopy and UV-vis diffuse reflectance spectroscopy. The monodisperse hierarchical (BiO) 2CO 3 microspheres are constructed by the self-assembly of single-crystalline nanosheets. The aggregation of nanosheets result in the formation of three dimensional hierarchical framework containing mesopores and macropores, which is favorable for efficient transport of reaction molecules and harvesting of photo-energy. The result reveals the existence of special two-band-gap structure (3.25 and 2.0eV) for (BiO) 2CO 3. The band gap of 3.25eV is intrinsic and the formation of smaller band gap of 2.0eV can be ascribed to the in situ doped nitrogen in lattice. The performance of hierarchical (BiO) 2CO 3 microspheres as efficient photocatalyst are further demonstrated in the removal of NO in indoor air under both visible light and UV irradiation. It is found that the hierarchical (BiO) 2CO 3 microspheres not only exhibit excellent photocatalytic activity but also high photochemical stability during long term photocatalytic reaction. The special microstructure, the high charge separation efficiency due to the inductive effect, and two-band-gap structure in all contribute to the outstanding photocatalytic activities. The discovery of monodisperse hierarchical nitrogen doped (BiO) 2CO 3 hollow structure is significant because of its potential applications in environmental pollution control, solar energy conversion, catalysis and other related areas.
机译:基于水合柠檬酸铋铋和尿素的水热处理,首次通过无罐模板法制备了玫瑰状单分散分层(BiO)2CO 3空心微球。通过X射线衍射,拉曼光谱,傅立叶变换红外光谱,透射电子显微镜,扫描电子显微镜,N 2吸附-解吸等温线详细描述了制备的(BiO)2CO 3上层结构的微观结构和能带结构。 X射线光电子能谱和紫外可见漫反射光谱。单分散的分级(BiO)2CO 3微球是通过单晶纳米片的自组装构建的。纳米片的聚集导致形成包含中孔和大孔的三维层次框架,这有利于反应分子的有效运输和光能的收集。结果表明(BiO)2CO 3存在特殊的双带隙结构(3.25和2.0eV)。3.25eV的带隙是固有的,而2.0eV的较小带隙的形成可归因于在晶格中原位掺杂氮。分层(BiO)2CO 3微球作为有效光催化剂的性能在可见光和紫外线照射下去除室内空气中的NO时得到进一步证明。发现分层的(BiO)2CO 3微球在长期光催化反应期间不仅表现出优异的光催化活性,而且表现出高的光化学稳定性。特殊的微观结构,归因于感应作用的高电荷分离效率以及两带隙结构都有助于出色的光催化活性。单分散分层氮掺杂(BiO)2CO 3空心结构的发现具有重要意义,因为其在环境污染控制,太阳能转化,催化和其他相关领域中的潜在应用。

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