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A procession on photocatalyst for solar fuel production and waste treatment

机译:用于太阳能燃料生产和废物处理的光催化剂的游行

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摘要

Conversion of solar energy into hydrogen is one the most promising renewable energy technology which is stimulated after detection of increasing global energy consumption and climate changes by the emission of fossil fuel. Photocatalytic water splitting use semiconductor materials having the electronic structure suitable for charge (electron and hole) injection for water decomposition to produce H-2 and O-2. Many inorganic materials are now using as active photocatalyst for water reduction since artificial photocatalytic water splitting has discovered for the very first time in 1971. Beyond, metal oxides, sulfides, and nitrides are the common photocatalytic semiconductor. To material science, research in this compass has brought huge grip that commits to the development of visible light active substances progressively. In this review along with the introduction of solar fuel, photocatalyst and photocatalytic water splitting, up-and-coming photocatalysts for solar-to-fuel conversion and photocatalytic purification of environment are discussed. We address TiO2 based, carbon based and two dimensional materials based photocatalyst for solar fuel production and waste treatment.
机译:太阳能转化为氢是最有前途的可再生能源技术,在检测到通过排放化石燃料的全球能量消耗和气候变化而受到刺激。光催化水分裂使用具有电子结构的半导体材料,适用于充电(电子和孔)注射用于水分解以产生H-2和O-2。现在,许多无机材料现在用作活性光催化剂进行水减少,因为人工光催化水分解在1971年首次被发现。除了超越,金属氧化物,硫化物和氮化物是普通的光催化半导体。对材料科学,在这块指南针中的研究带来了巨大的抓地力,以逐渐提高可见光活性物质的发展。在本综述以及引入太阳能燃料,光催化剂和光催化水分裂,可用于太阳能 - 燃料转换和光催化的环境的光催化剂。我们地址基于TiO2,碳基和两维材料的太阳能燃料生产和废物处理。

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