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首页> 外文期刊>Catalysis science & technology >One-step construction of {001} facet-exposed BiOCl hybridized with Al2O3 for enhanced molecular oxygen activation
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One-step construction of {001} facet-exposed BiOCl hybridized with Al2O3 for enhanced molecular oxygen activation

机译:一步建设{001}facet-exposed BiOCl杂化与氧化铝增强的分子氧活化

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摘要

{001} facet-exposed BiOCl with surface oxygen vacancies (SOVs) is developed via a facile ionic liquid (IL) self-combustion route using diethylamine hydrochloride (DLH, (C2H5)(2)NH center dot HCl) as a fuel and a source of the IL cation. It is found for the first time that an excess of DLH can not only facilitate the growth of {001} facets, but also create a reducing atmosphere for combustion, resulting in the release of oxygen atoms on the surface of BiOCl and thus the formation of SOVs. The existence of SOVs lifts the energy band potentials of BiOCl and narrows its energy band gap. To improve the separation efficiency of the photo-generated electrons and holes in BiOCl, amorphous Al2O3 is introduced to construct a heterojunction via an in situ combustion strategy by mixing their aqueous precursors. The heterostructured BiOCl/Al2O3 photocatalysts exhibit noticeable molecular oxygen activation and photocatalytic degradation of Rhodamine B. The conduction band (CB) position of amorphous Al2O3 is proposed for the first time, which matches well with that of BiOCl with SOVs and contributes to the effective transfer of electrons from BiOCl to Al2O3.
机译:{001} facet-exposed BiOCl表面与氧气空缺(位)是通过简单离子发达液体(IL)自燃的路线使用二乙胺盐酸盐(DLH, (2) NH (C2H5)中心点盐酸)作为燃料的来源阳离子。超过DLH不仅可以促进经济增长{001}面,但也减少大气燃烧,导致的释放氧原子BiOCl表面因此位的形成。位电梯BiOCl能带势及其能量带隙变窄。photo-generated的分离效率电子和空穴在BiOCl,非晶态氧化铝介绍了构建一个通过一个异质结原位燃烧策略通过混合水前辈。BiOCl /氧化铝催化剂表现出明显的分子氧的活化以及光催化降解罗丹明b的导带提出了非晶态氧化铝(CB)的位置第一次,与之很好匹配BiOCl位和有助于有效将电子从BiOCl氧化铝。

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