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首页> 外文期刊>Advanced Functional Materials >Effective Prevention of Charge Trapping in Graphitic Carbon Nitride with Nanosized Red Phosphorus Modification for Superior Photo(electro)catalysis
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Effective Prevention of Charge Trapping in Graphitic Carbon Nitride with Nanosized Red Phosphorus Modification for Superior Photo(electro)catalysis

机译:纳米红色磷改性有效地防止石墨化氮化碳中的电荷陷阱,从而实现优异的光(电)催化

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摘要

The high occurrence of trapped unreactive charges due to chemical defects seriously affects the performance of g-C3N4 in photocatalytic applications. This problem can be overcome by introducing ultrasmall red phosphorus (red P) crystals on g-C3N4 sheets. The elemental red P atoms reduce the number of defects in the g-C3N4 structure by forming new chemical bonds for much more effective charge separation. The product shows significantly enhanced photocatalytic activity toward hydrogen production. To the best of our knowledge, the hydrogen evolution rate obtained on this hybrid should be the highest among all P-containing g-C3N4 photocatalysts reported so far. The trapping and detrapping processes in this red P/g-C3N4 system are thoroughly revealed by using time-resolved transient absorption spectroscopy.
机译:由于化学缺陷而导致大量滞留的无反应电荷严重影响了g-C3N4在光催化应用中的性能。通过在g-C3N4薄片上引入超小型红磷(red P)晶体可以克服此问题。元素红P原子通过形成新的化学键以更有效地进行电荷分离,减少了g-C3N4结构中的缺陷数量。该产物对产氢显示出显着增强的光催化活性。据我们所知,在迄今为止报道的所有含P的g-C3N4光催化剂中,通过该杂化物获得的氢释放速率应该是最高的。通过使用时间分辨瞬态吸收光谱,可以充分揭示该红色P / g-C3N4系统中的捕集和捕集过程。

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