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首页> 外文期刊>Journal of Catalysis >Novel photocatalytic activity of Cu@V co-doped TiO2/PU for CO2 reduction with H2O vapor to produce solar fuels under visible light
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Novel photocatalytic activity of Cu@V co-doped TiO2/PU for CO2 reduction with H2O vapor to produce solar fuels under visible light

机译:Cu @ V掺杂TiO2 / PU的新型光催化活性CO2减少H2O蒸汽,在可见光下生产太阳能燃料

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In this study, Cu and V co-doped TiO2 deposited on polyurethane (Cu@V-TiO2/PU) was synthesized as a catalyst for the reduction of CO2 with H2O vapor to preferentially produce CH4 as a valuable solar fuel under visible light. The Cu and V dopants defected into the TiO2 lattice, leading to the formation of Ti3+ and oxygen vacancies in the lattice. The Ti-3 formed in the doped TiO2 lattice created an intermediate band between the valence band and the conduction band of TiO2, leading to an increase in the electron hole pair separation efficiency of TiO2. The oxygen vacancies existing on the surface of the photocatalyst could induce new adsorption sites to adsorb CO2. The generated electrons and holes reacted with the adsorbed CO2 and with H2O vapor to produce CO and primarily CH4. Therefore, the Cu@V-TiO2/PU photocatalysts successfully utilized visible light as the energy source and H2O vapor as a reductant to reduce CO2 to CO and CH4. The Cu@V-TiO2/PU photocatalysts also supplied sufficient electrons and holes for the selective reduction of CO2 to CH4 rather than CO. The 2Cu@4V-TiO2/PU photocatalyst, with CuiTiO(2) and ViTiO(2) ratios of 2 and 4 wt.%, respectively, exhibited the highest photocatalytic activity for CO2 conversion into solar fuels. The production rates of CH4 and CO produced from the CO2 reduction by the 2Cu@4V-TiO2/PU photocatalyst under visible light were 933 and 588 gmol g(-1) cat. h(-1), respectively. (C) 2016 Elsevier Inc. All rights reserved.
机译:在本研究中,铜和钒共掺杂的TiO2沉积在聚氨酯上(Cu@V-合成了TiO2/PU)作为催化剂,用H2O蒸汽还原CO2,在可见光下优先生成CH4作为有价值的太阳能燃料。Cu和V掺杂剂缺陷进入TiO2晶格,导致晶格中形成Ti3+和氧空位。掺杂TiO2晶格中形成的Ti-3在TiO2的价带和导带之间形成了一个中间带,从而提高了TiO2的电子-空穴对分离效率。光催化剂表面存在的氧空位可以诱导新的吸附位点吸附二氧化碳。生成的电子和空穴与吸附的CO2和H2O蒸汽反应生成CO,主要是CH4。因此Cu@V-TiO2/PU光催化剂成功地利用可见光作为能源,H2O蒸汽作为还原剂将CO2还原为CO和CH4。这个Cu@V-TiO2/PU光催化剂还提供了足够的电子和空穴,用于选择性地将CO2还原为CH4,而不是CO2Cu@4V-TiO2/PU光催化剂的CuTiO(2)和ViTiO(2)的重量比分别为2%和4%,在将CO2转化为太阳能燃料方面表现出最高的光催化活性。通过CO2还原过程产生的CH4和CO的产率2Cu@4V-可见光下的TiO2/PU光催化剂分别为933和588 gmol g(-1)cat。h(-1)。(C) 2016爱思唯尔公司版权所有。

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