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Self-organized copper impregnation and doping in TiO_2 with enhanced photocatalytic conversion of H_2O and CO_2 to fuel

机译:自组织铜浸渍和掺杂在TiO_2中,增强了H_2O和CO_2的光催化转化为燃料的能力

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To utilize the full spectrum of solar light, we prepared a series of self-organized Cu-TiO2 photocatalysts via the sonothermal-hydrothermal route with high reactivity under both UV and visible region. The obtained catalysts were characterized by XRD, UV-Vis, BET surface area, SEM, TEM, XPS, and TPR. The Cu species were doped in the lattice of TiO2 and also present on the surface of TiO2 as revealed by TEM, XPS, and TPR. Catalytic potential of prepared catalysts was checked for photocatalytic reduction of CO2. The effects of the different base including K2CO3, Na2CO3, NaOH, KOH, the concentration of base, catalyst amount, copper doping amount, light source, reaction medium and reaction time were monitored to get optimum reaction conditions. The Cu-2-TiO2 catalyst performed the best; 6.6 mu mol g(-1) of methane, 472.5 mu mol g(-1) methanol, and 743.8 mu mol g(-1) of acetone were obtained in KOH/H2O medium in 24 h under UVA. While in acetonitrile (ACN)/Triethanolamine (TEOA)/H2O mixture, the Cu-2-TiO2 catalyst was able to selectively catalyze methanol formation (99.99%) 8469.6 mu mol g(-1) in 24 h under visible light. The formation of H-center dot is also an intermediate step in the photocatalytic reduction of CO2. Therefore, the Cu-2-TiO2 catalyst was also tested for H-2 production with or without CO2 at different reaction media such as H2O, KOH/H2O, ACN/H2O, ACN/TEOA/H2O under UVA light. The highest H-2 production, i.e., 152.0 mmol g(-1) was observed with ACN/TEOA/H2O in the presence of CO2 in 8 h. The prepared series of Cu-TiO2 catalysts are highly active for CO2 reduction and H-2 production. (C) 2018 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:为了利用太阳光的全部光谱,我们通过声热-水热途径制备了一系列自组织的Cu-TiO2光催化剂,在紫外和可见光区域均具有高反应活性。通过XRD,UV-Vis,BET表面积,SEM,TEM,XPS和TPR表征所获得的催化剂。如通过TEM,XPS和TPR所揭示的,Cu物种被掺杂在TiO 2的晶格中并且也存在于TiO 2的表面上。检查制备的催化剂的催化潜力以进行CO 2的光催化还原。监测了不同的碱(包括K2CO3,Na2CO3,NaOH,KOH,碱的浓度,催化剂的量,铜的掺杂量,光源,反应介质和反应时间)的影响,以获得最佳的反应条件。 Cu-2-TiO2催化剂的性能最好。在UVA下于24小时内在KOH / H2O介质中获得6.6μmol g(-1)的甲烷,472.5μmol g(-1)的甲醇和743.8μmol g(-1)的丙酮。在乙腈(ACN)/三乙醇胺(TEOA)/ H2O混合物中时,Cu-2-TiO2催化剂能够在可见光下于24小时内选择性催化甲醇形成(99.99%)8469.6μmol g(-1)。 H中心点的形成也是光催化还原CO2的中间步骤。因此,还测试了Cu-2-TiO2催化剂在UVA光照下在不同的反应介质(例如H2O,KOH / H2O,ACN / H2O,ACN / TEOA / H2O)下在有或没有CO2的条件下产生H-2的情况。在8小时内在CO2存在下用ACN / TEOA / H2O观察到最高的H-2产量,即152.0 mmol g(-1)。制备的一系列Cu-TiO2催化剂对减少CO2和生产H-2具有高活性。 (C)2018氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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