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Highly Efficient Photocatalytic Hydrogen Evolution Using a Self‐Assembled Octupolar Molecular System

机译:基于自组装八极分子体系的高效光催化析氢

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Abstract A highly efficient photocatalytic hydrogen evolution system was prepared by using an octupolar molecule as a building block of self‐assembled nanoparticles. The photocatalytic system showed an enhanced hydrogen evolution reaction (HER) rate upon the addition of halide ions, which was attributed to an external heavy atom effect enhancing intersystem crossing. The HER rate of the photocatalytic system was proportional to the atomic weight and concentration of halide ion additives, and its maximum HER rate reached 460 mmol/g ⋅ h in the presence of iodide ions and a metal co‐catalyst. Further, the photocatalytic system without any halide ion additives generated hydrogen gas utilizing seawater and stimulated sunlight with remarkable efficiency (apparent quantum yield∼3.8 %).
机译:抽象的一种高效光催化氢进化系统是通过使用准备的一个octupolar分子的构建块自组装纳米粒子。系统显示一个增强氢进化反应(她)率的卤化物离子,归因于外部沉重原子效应增强系统交叉。她的光催化体系与原子重量和成正比卤化物离子添加剂的浓度,其她最大速度达到460更易/ g⋅h碘离子和金属有限公司的催化剂。此外,没有任何的光催化系统卤化物离子添加剂生成氢气利用海水和阳光刺激卓越(表观量子效率

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