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首页> 外文期刊>Angewandte Chemie >Highly Efficient Photocatalytic H2 Evolution from Water using Visible Light and Structure-Controlled Graphitic Carbon Nitride
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Highly Efficient Photocatalytic H2 Evolution from Water using Visible Light and Structure-Controlled Graphitic Carbon Nitride

机译:使用可见光和结构受控的石墨化碳氮化物从水中高效光催化分解H2

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摘要

The major challenge of photocatalytic water splitting, the prototypical reaction for the direct production of hydrogen by using solar energy, is to develop low-cost yet highly efficient and stable semiconductor photocatalysts. Herein, an effective strategy for synthesizing extremely active graphitic carbon nitride (g-C3N4) from a low-cost precursor, urea, is reported. The g-C3N4 exhibits an extraordinary hydrogen-evolution rate (ca. 20000 μmol h~(-1) g~(-1)under full arc), which leads to a high turnover number (TON) of over 641 after 6 h. The reaction proceeds for more than 30 h without activity loss and results in an internal quantum yield of 26.5 % under visible light, which is nearly an order of magnitude higher than that observed for any other existing g-C3N4 photocatalysts. Furthermore, it was found by experimental analysis and DFT calculations that as the degree of polymerization increases and the proton concentration decreases, the hydrogen-evolution rate is significantly enhanced.
机译:光催化水分解的主要挑战是通过使用太阳能直接生产氢的原型反应,是开发低成本但高效稳定的半导体光催化剂。本文中,报道了一种从低成本前体尿素合成极活泼的石墨氮化碳(g-C3N4)的有效策略。 g-C3N4表现出非同寻常的氢释放速率(在全电弧下约为20000μmolh〜(-1)g〜(-1)),这导致6小时后的高转换数(TON)超过641。该反应进行了30多个小时而没有活性损失,并在可见光下产生了26.5%的内部量子产率,这几乎比任何其他现有g-C3N4光催化剂所观察到的高出一个数量级。此外,通过实验分析和DFT计算发现,随着聚合度的增加和质子浓度的降低,氢的释放速率显着提高。

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