论文标题

用于调节Tio $ _2 $和SRTIO $ _3 $的电子结构的CODOping的理论见解,以增强光催化效率

Theoretical insights of codoping to modulate electronic structure of TiO$_2$ and SrTiO$_3$ for enhanced photocatalytic efficiency

论文作者

Kumar, Manish, Basera, Pooja, Saini, Shikha, Bhattacharya, Saswata

论文摘要

Tio $ _2 $和SRTIO $ _3 $是光催化领域的众所周知的材料,因为它们具有出色的电子结构,高化学稳定性,无毒性和低成本。但是,由于宽带隙,这些距离只能在紫外线区域中使用。因此,有必要通过用金属,非金属或不同元素组合掺杂其带隙,从而扩大其在可见区域的光学响应,同时保留光催化效率的完整。我们在这里报告,使用混合密度功能理论和\ textit {ab libio}原子热力学,用于有效的光催化水分裂,用于有效的光催化水分,用于有效的光催化水分,在剖析酶Tio $ _2 $和srtio $ _3 $中的金属和非金属的编码。后者确保捕获环境效应,以了解在现实情况下带电缺陷的热力学稳定性。我们已经观察到,除了剖析酶TiO $ _2 $中的中性缺陷外,带电的缺陷是稳定的,并且代码剂根据掺杂的性质(p-type或n-type)作为供体以及受体。但是,Srtio $ _3 $中最稳定的编码器主要充当捐助者。我们的结果表明,尽管在可见光区域有响应,但由于重组中心的形成或传导带最小值或价值最小的最小变化,Tio $ _2 $和SRTIO $ _3 $中的编码不能总是增强光催化活性。在各种金属非量子组合中,Mn $ _ \ textrm {ti} $ s $ _ \ textrm {o} $(即在Ti网站上替换Mn,在O网站上替换了S $ _ \ textrm {O} $在Anatase Tio Tio Tio $ _2 $ _2 $ _2 $ _2 $ _2 $ _ \ textrm {o} $ mn $ _ \ textrm {ti} $ s $ _ \ textrm {o} $,mn $ _ \ textrm {sr} $ n $ _ \ textrm {O textrm {o} $ in Srtio $ $ _3 $是增强pmotocaty $ effice $ gublity $ guse $ y n of and offii $ y的$ _3 $ and antatase $ rttii $ rttio光照射。

TiO$_2$ and SrTiO$_3$ are well known materials in the field of photocatalysis due to their exceptional electronic structure, high chemical stability, non-toxicity and low cost. However, owing to the wide band gap, these can be utilized only in the UV region. Thus, it's necessary to expand their optical response in visible region by reducing their band gap through doping with metals, nonmetals or the combination of different elements, while retaining intact the photocatalytic efficiency. We report here, the codoping of a metal and a nonmetal in anatase TiO$_2$ and SrTiO$_3$ for efficient photocatalytic water splitting using hybrid density functional theory and \textit{ab initio} atomistic thermodynamics. The latter ensures to capture the environmental effect to understand thermodynamic stability of the charged defects at a realistic condition. We have observed that the charged defects are stable in addition to neutral defects in anatase TiO$_2$ and the codopants act as donor as well as acceptor depending on the nature of doping (p-type or n-type). However, the most stable codopants in SrTiO$_3$ mostly act as donor. Our results reveal that despite the response in visible light region, the codoping in TiO$_2$ and SrTiO$_3$ cannot always enhance the photocatalytic activity due to either the formation of recombination centers or the large shift in the conduction band minimum or valence band maximum. Amongst various metal-nonmetal combinations, Mn$_\textrm{Ti}$S$_\textrm{O}$ (i.e. Mn is substituted at Ti site and S is substituted at O site), S$_\textrm{O}$ in anatase TiO$_2$ and Mn$_\textrm{Ti}$S$_\textrm{O}$, Mn$_\textrm{Sr}$N$_\textrm{O}$ in SrTiO$_3$ are the most potent candidates to enhance the photocatalytic efficiency of anatase TiO$_2$ and SrTiO$_3$ under visible light irradiation.

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