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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >The impact of nitrogen doping and reduced-niobium self-doping on the photocatalytic activity of ultra-thin Nb3O8- nanosheets
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The impact of nitrogen doping and reduced-niobium self-doping on the photocatalytic activity of ultra-thin Nb3O8- nanosheets

机译:氮掺杂和减少铌自掺杂对超薄NB3O8-纳米晶片的光催化活性的影响

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摘要

Nitrogen doping via high-temperature ammonization is a frequently used strategy to extend the light harvesting capacity of wide-bandgap catalysts in the visible region. Under such a reductive atmosphere, the reduction of transition metals is supposed to occur, however, this has not been thoroughly studied yet. Here, by combining chemically-controlled doping and subsequent liquid exfoliation, ultra-thin [Nb3O8](-) nanosheets with separate N doping, reduced-Nb doping and N/reduced-Nb codoping were fabricated for comparative studies on the doping effect for photocatalytic hydrogen evolution. Layered KNb3O8 was used as the starting material and the above-mentioned three doping conditions were achieved by high-temperature treatment with urea, hydrogen and ammonia, respectively. The morphology, crystal and electronic structures, and the catalytic activity of the products were characterized thoroughly by means of TEM, AFM, XRD, XPS, EPR, absorption spectroscopy and photocatalytic hydrogen evolution. Significantly, the black N/reduced-Nb co-doped monolayer [Nb3O8](-) nanosheets exhibit the mostly enhanced photocatalytic hydrogen generation rate, indicating a synergistic doping effect of the multiple chemical-design strategy. The modified electronic structure of [Nb3O8](-) nanosheets and the role of exotic dopants in bandgap narrowing are put forward for the rational design of better photocatalysts with reduced-metal self-doping.
机译:通过高温氨化的氮掺杂是一种常用的策略,以延长可见区域中的宽带隙催化剂的光收集能力。在这种还原气氛下,过渡金属的减少应该发生,然而,这尚未彻底研究。这里,通过组合化学控制的掺杂和随后的液体剥离,制造具有单独的N掺杂,减少的Nb掺杂和N /减少的NB掺杂的超薄[Nb3O8]( - )纳米片,以进行对比较研究对光催化的掺杂效果的比较研究氢气进化。层状KNB3O8用作原料,通过尿素,氢气和氨的高温处理实现了上述三种掺杂条件。通过TEM,AFM,XRD,XPS,EPR,吸收光谱和光催化氢进化,彻底地表征了产品的形态,晶体和电子结构,以及产品的催化活性。值得注意的是,黑色n /缩减Nb共掺杂单层[Nb3O8]( - )纳米晶片表现出最大增强的光催化氢生成率,表明多种化学设计策略的协同掺杂效果。 [NB3O8]( - )纳米液的改良电子结构以及异国情调掺杂剂在带隙变窄中的作用,提出了具有欠金属自掺杂的更好光催化剂的合理设计。

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