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The superior photocatalytic activity of Nb doped TiO2/g-C3N4 direct Z-scheme system for efficient conversion of CO2 into valuable fuels

机译:Nb掺杂TiO2 / G-C3N4直接Z方案系统的卓越光催化活性,以便有效地将CO2转化为有价值的燃料

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In this study, we firstly aimed to use Nb as dopant to dope into the TiO2 lattice in order to narrow band gap energy or enhance photocatalytic activity of the Nb-TiO2. Then, the prepared Nb-TiO2 was combined with g-C3N4 to establish Nb-TiO2/g-C3N4 direct Z-scheme system for superior reduction of CO2 into valuable fuels even under visible light. The obtained results indicated that the band gap energy of the Nb-TiO2 (2.91 eV) was lower than that of the TiO2 (3.2 eV). In the successfully established Nb-TiO2/g-C3N4 direct Z-scheme system, the photo-excited e(-) in the CB of the Nb-TiO2 combined with the photo-excited h(+) in the VB of the g-C3N4 preserving the existence of e(-) in the CB of the g-C3N4 and h(+). in the VB of Nb-TiO2, and thereby, the system produced numerous amount of available e(-)/h(+) pairs for the reduction of CO2 into various valuable fuels. In addition, the produced e(-) of the Nb-TiO2/g-C3N4 existing in the CB of the g-C3N4, which the potential energy is approximately -1.2 V, would be strong enough for the reduction of CO2 to generate not only CH4 and CO but also HCOOH. Among established Nb-TiO2/g-C3N4 materials, the 50Nb-TiO2/50 g-C3N4 material was the best material for the CO2 reduction. (C) 2019 Published by Elsevier Inc.
机译:在这项研究中,我们首先旨在使用Nb作为掺杂剂掺入TiO 2格中,以便窄带隙能量或增强Nb-TiO2的光催化活性。然后,将制备的Nb-TiO 2与G-C3N4合并以建立Nb-TiO 2 / G-C3N4直接Z - 方案系统,即使在可见光下也能够将CO2的优异减少到有价值的燃料中。所得结果表明,Nb-TiO2(2.91eV)的带间隙能量低于TiO 2(3.2eV)。在成功建立的Nb-TiO2 / G-C3N4直接Z方案系统中,Nb-TiO2的CB中的光激发e( - )与G-的VB中的光激发H(+)结合在一起C3N4在G-C3N4和H(+)的CB中保持E( - )的存在。在NB-TiO 2的VB中,从而使系统产生了许多可用的E( - )/ H(+)对,用于将CO2还原成各种有价值的燃料。另外,存在于G-C3N4的CB中的Nb-TiO2 / g-C3N4的产生的e( - ),势能约为-1.2V,足以使二氧化碳的减少产生不产生只有CH4和CO,还有HCOOH。在已建立的Nb-TiO 2 / G-C3N4材料中,50nb-TiO2 / 50g-C3N4材料是CO 2还原的最佳材料。 (c)2019年由elsevier公司发布

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