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Solar Hydrogen Generation over Carbon Nitride Photocatalyst Promoted by Water‐Soluble Carbon Dots

机译:水溶性碳点促进氮化碳光催化剂的太阳能制氢

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Abstract Solar hydrogen generation from water is one of the promising routes to alleviate the current environmental and energy issues. Graphitic carbon nitride (g‐C3N4) has emerged as a promising photocatalyst for hydrogen evolution using visible light while withstanding harsh chemical environments. However, the high occurrence of trapped unreactive charges seriously affects the catalytic performance of g‐C3N4 in photocatalysis applications. Herein, we show that the addition of water‐soluble carbon dots (CDs) to the reaction solution will promote the relaxation of photogenerated electrons in g‐C3N4, thus effectively improving the photocatalytic performance for hydrogen evolution by two times (983.7 vs. 490.7 μmol ⋅ h−1 ⋅ g−1 for with and without CDs, respectively). The steady state properties of the reaction system are studied by ultraviolet‐visible (UV‐vis) and photoluminescence (PL) excitation/emission spectroscopy, which show that the introduction of CDs enhances the visible light absorption of the reaction system. Furthermore, the charge trapping and detrapping processes in g‐C3N4 are further revealed by using time‐resolved photoluminescence (tr‐PL) spectroscopy. The correlation between charge transfer and photocatalytic activity provides new insights into the charge separation dynamics and activity of carbon‐based photocatalysts.
机译:抽象的太阳能氢生成水的一个有前途的路线来缓解当前的环境和能源问题。石墨碳氮化已成为高C3N4区域(g)一个有前途的光催化剂对氢进化利用可见光而承受严厉的化学环境。发生困不起化学反应的指控严重影响的催化性能在光催化应用程序g C3N4应承担的。表明添加水可溶性碳点(CDs)将促进反应的解决方案photogenerated电子的放松g C3N4应承担的,从而有效地改善光催化性能氢进化因为没有cd,分别)。反应系统的稳态性能研究了紫外可见(紫外线量vis)和光致发光(PL)激发/发射光谱,表明引入CDs提高可见光的吸收反应系统。在g和detrapping流程C3N4进一步显示,使用时间的解决光致发光(tr PL)应承担的能谱。电荷转移和催化活性电荷分离提供了新的见解基于动态和活动的碳量论文的。

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