首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Boosting photocatalytic water oxidation reactions over strontium tantalum oxynitride by structural laminations
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Boosting photocatalytic water oxidation reactions over strontium tantalum oxynitride by structural laminations

机译:通过结构叠层促进通过氮钽钽氧化反应的光催化水氧化反应

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摘要

Perovskite oxynitrides often own a poor photocatalytic activity under normal conditions, being incommensurate to their strong visible light absorbance. This is particularly true for SrTaO2N which undergoes self-oxidative decompositions even under protection of a hole scavenger. In this work, we laminate the crystal structure of SrTaO2N by inserting extra layers of SrO to form a Ruddlesden-Popper (RP) compound Sr2TaO3N. This structural modification not only improves the light absorption of SrTaO2N but also effectively suppresses the defect formation such as Ta4+ species etc. More importantly, Sr2TaO3N is able to drive photocatalytic water oxidation reactions under visible light illumination (lambda = 420 nm) without the aid of a cocatalyst and self-oxidative decompositions found for SrTaO2N are largely inhibited. Further analysis suggests that the presence of extra SrO layers positively shifts the valence band edge and stabilizes N species in the structure according to Pauling's second rule. Theoretical calculations indicate that Sr2TaO3N has typical 2D charge transportation properties which are associated with the structural laminations. Its conduction band minimum (CBM) and valence band maximum (VBM) are found to be located within TaN2O2 square planes which favors efficient charge transportations.
机译:钙钛矿氧氮化族通常在正常条件下具有差的光催化活性,其在其强烈的可见光吸光度下不相应。对于甚至在保护孔清除剂的情况下,这对于经历自氧化分解的SRTAO2N尤其如此。在这项工作中,通过将额外的SrO层形成额外的SRO形成鲁德勒斯·普培(RP)化合物SR2TAO3N来层压SRTAO2N的晶体结构。这种结构改性不仅改善了SRTAO2N的光吸收,而且还有效地抑制了诸如TA4 +物种等的缺陷形成等。更重要的是,SR2TaO3N能够在可见光照射(Lambda& = 420nm)下驾驶光催化水氧化反应对SRTAO2N发现的助催化剂和自我氧化分解的辅助受到大幅抑制。进一步的分析表明,额外的SRO层的存在呈正向转变价带边缘,并根据保罗的第二条规则稳定在结构中的N种。理论计算表明SR2TaO3N具有与结构叠片相关的典型的2D电荷运输性能。它发现其导通带最小(CBM)和价带最大值(VBM)位于Tan2O2平面中,这些平面窗口有利于有效的充电运输。

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