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首页> 外文期刊>Angewandte Chemie >Tailoring the Grain Boundary Chemistry of Polymeric Carbon Nitride for Enhanced Solar Hydrogen Production and CO2 Reduction
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Tailoring the Grain Boundary Chemistry of Polymeric Carbon Nitride for Enhanced Solar Hydrogen Production and CO2 Reduction

机译:剪裁聚合物碳氮化物的晶界化学,以增强太阳能氢气产生和二氧化碳还原

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摘要

Photocatalytic water splitting is a promising and clean way to mimic plant photosynthesis in a sustainable manner. Improvements of the quantum efficiency and optical absorption in the relevant range are necessary steps to approach practicality. Herein, we reported that these issues can be readily addressed when 5-aminotetrazole, a monomer with high nitrogen content, is used for the synthesis of carbon nitride. The molten salt mixture NaCl/KCl is used as a high-temperature solvent to tailor the grain boundary structure and chemistry. Visible light quantum efficiency for H-2 production of 0.65 could be obtained in the presence of K2HPO4 as a double layer modifier. This value is very high, considering that this number depends on light to charge couple conversion, charge localization, as well as a successful oxidation and reduction reaction.
机译:光催化水分是以可持续方式模仿植物光合作用的有前途和清洁的方法。 相关范围内的量子效率和光学吸收的改进是接近实用性的必要步骤。 在此,我们报道了当5-氨管四唑,具有高氮含量的单体的单体时可以容易地解决这些问题用于合成碳氮化物。 熔融盐混合物NaCl / KCl作为高温溶剂,以定制晶粒边界结构和化学。 可以在K2HPO4的存在中获得H-2的H-2产生的可见光量子效率作为双层改性剂。 该值非常高,考虑到该数量取决于光度充电耦合转换,充电定位以及成功的氧化和还原反应。

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