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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Tuning the properties of visible-light-responsive tantalum (oxy)nitride photocatalysts by non-stoichiometric compositions: a first-principles viewpoint
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Tuning the properties of visible-light-responsive tantalum (oxy)nitride photocatalysts by non-stoichiometric compositions: a first-principles viewpoint

机译:通过非化学计量组成调整可见光响应型钽(氧)氮化物光催化剂的性质:第一性原理

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摘要

Finding an ideal photocatalyst for achieving efficient overall water splitting still remains a great challenge. By applying accurate first-principles quantum calculations based on DFT with the screened non-local hybrid HSE06 functional, we bring rational insights at the atomic level into the influence of non-stoichiometric compositions on essential properties of tantalum (oxy)nitride compounds as visible-light-responsive photocatalysts for water splitting. Indeed, recent experiments show that such non-stoichiometry is inherent to the nitridation methods of tantalum oxide with unavoidable oxygen impurities. We considered here O-enriched Ta3N5 and N-enriched TaON materials. Although their structural parameters are found to be very similar to those of pure compounds and in good agreement with available experimental studies, their photocatalytic features for visible-light-driven overall water splitting reactions show different behaviors. Further partial nitration of TaON leads to a narrowed band gap, but partially oxidizing Ta3N5 causes only subtle changes in the gap. The main influence, however, is on the band edge positions relative to water redox potentials. The pure Ta3N5 is predicted to be a good candidate only for H~+ reduction and H2 evolution, while the pure TaON is predicted to be a good candidate for water oxidation and O2 evolution. Non-stoichiometry has here a positive influence, since partially oxidized tantalum nitride, Ta_((3-x))N_((5-5x))O_(5x) (for x > 0.16) i.e. with a composition in between TaON and Ta3N5, reveals suitable band edge positions that correctly bracket the water redox potentials for visible-light-driven overall water splitting reactions. Among the various explored Ta_((3-x))N_((5-5x))O_(5x) structures, a strong stabilization is obtained for the configuration displaying a strong interaction between the O-impurities and the created Ta-vacancies. In the lowest-energy structure, each created Ta-vacancy is surrounded by five O-impurity species substituting the five N sites characterizing one octahedral environment.
机译:寻找理想的光催化剂以实现有效的总水分解仍然是巨大的挑战。通过应用基于DFT的准确的第一性原理量子计算以及经过筛选的非局部杂化HSE06功能,我们在原子水平上将合理的见解带入了非化学计量组成对氮化钽(氧)化合物基本性质的影响,用于水分解的光敏性光催化剂。实际上,最近的实验表明,这种非化学计量是氧化钽与不可避免的氧杂质的氮化方法所固有的。我们在这里考虑了O富集的Ta3N5和N富集的TaON材料。尽管发现它们的结构参数与纯化合物的结构参数非常相似,并且与可用的实验研究高度吻合,但它们对可见光驱动的总水分解反应的光催化特性显示出不同的行为。 TaON的进一步部分硝化会导致带隙变窄,但是Ta3N5的部分氧化只会使间隙产生细微的变化。但是,主要影响是相对于水氧化还原电势的能带边缘位置。预计纯Ta3N5仅是H〜+还原和H2释放的良好候选者,而纯TaON被预测是水氧化和O2释放的良好候选者。非化学计量在这里有积极的影响,因为部分氧化的氮化钽Ta _((3-x))N _((5-5x))O_(5x)(对于x> 0.16),即TaON和Ta3N5之间的组成揭示了合适的能带边缘位置,这些位置正确地将水的氧化还原电势括在了可见光驱动的总水分解反应中。在各种探索的Ta _((3-x))N _((5-5x))O_(5x)结构中,对于显示O杂质与所创建的Ta空位之间强相互作用的配置,获得了很强的稳定性。在能量最低的结构中,每个创建的Ta空位都被5个O杂质物种所包围,用5个N位点替代了一个八面体环境。

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