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Probing the role of nickel dopant in aqueous colloidal ZnS nanocrystals for efficient solar-driven CO2 reduction

机译:探讨镍掺杂剂在胶体ZnS纳米晶体中的作用,以高效的太阳能驱动CO2还原

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Photocatalytic CO2 reduction reaction (CO2RR) on a heterogeneous catalyst offers the possibility for CO2 abatement and emerges as a promising avenue for renewable carbonaceous fuels production at ambient temperature and pressure using solar light as the sole energy input. Here, we report a newly aqueous colloidal comprised of monodispersed Ni-doped ZnS (ZnS:Ni) nanocrystals as excellent visible-light-responsive photo catalysts for CO2RR into formate. The wavelength-dependent quantum yield shows a significant contribution of Ni doping for visible light activity. A high selectivity ( 95%) of HCOOH production and remarkable quantum efficiency of 59.1% at 340 nm and 5.6% at 420 nm are obtained over ZnS:Ni (0.1%) colloidal nanocrystals modified by Cd2+. The proper balance between sulfur vacancies and extended visible light absorption of the constructed colloidal ZnS:Ni nanocrystals contributes to the prominent performance for CO2RR. However, excessive doping of Ni does not guarantee an increase of photocatalytic CO2RR due to a diminish of sulfur vacancies. The regulation of sulfur vacancies by Ni doping and their interplay on photocatalytic CO2RR activity are presented and discussed. This work provides an in-depth insight of the role of dopant on vacancy modulation in photocatalyst beyond light absorption and a guidance for design of the potential photocatalyst for CO2RR.
机译:异质催化剂上的光催化二氧化碳还原反应(CO 2RR)提供CO2减少的可能性,并作为可再生碳质燃料产生的有希望的碳酸盐燃料生产大道,使用太阳光作为唯一能量输入。在这里,我们将一种新的胶体报告为单分散的Ni掺杂的ZnS(ZnS:Ni)纳米晶体,如用于CO 2 R甲酸的优异的可见光响应光照光催化剂。波长依赖性量子产率显示出Ni掺杂对于可见光活性的显着贡献。通过CD2 +改性的ZnS:Ni(0.1%)胶体纳米晶体,在340nm下,在340nm处的高选择性(& 95%)的HCOOH产生和显着的量子效率为59.1%,在420nm下获得5.6%。硫空位与构建的胶体Zns的延长可见光吸收之间的适当平衡:Ni纳米晶体有助于CO 2RR的显着性能。然而,由于硫空位减少,Ni的过度掺杂不保证光催化CO2RR增加。介绍并讨论了Ni掺杂和它们对光催化CO 2RR活性的硫空位的调节及其在光催化CO 2RR活性上。这项工作提供了对掺杂剂对光催化剂空缺调制的作用的深入了解,除了光吸收和潜在光催化剂的指导下为CO 2RR。

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