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首页> 外文期刊>Nanoscale >Ultrathin mesoporous graphitic carbon nitride nanosheets with functional cyano group decoration and nitrogen-vacancy defects for an efficient selective CO2 photoreduction
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Ultrathin mesoporous graphitic carbon nitride nanosheets with functional cyano group decoration and nitrogen-vacancy defects for an efficient selective CO2 photoreduction

机译:超薄氮化介孔石墨碳nanosheets与功能性含氰基的装饰和氮-空位缺陷的有效二氧化碳选择性光致还原作用

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摘要

Graphitic carbon nitrides have CO2 photoreduction ability, but their activities are limited by the low potential and mobility of photogenerated carriers. Herein, ultrathin mesoporous graphitic carbon nitride nanosheets (CNNS) synchronously decorated with functional cyano groups and nitrogen vacancies were prepared by a facile molten salt route. The CNNS presented unprecedentedly excellent gas-phase CO2 photoreduction performance under visible light irradiation without any co-catalyst or a sacrificial agent, and have a CH4-yielding rate of 23.0 mu mol g(-1) h(-1) and a selectivity of 97.9%. This boosted performance can be attributed to the synergistic effect of cyano group decoration, abundant nitrogen vacancies and extremely high surface area, which improve electron storage, charge carrier mobility, CO2 affinity, and optimize the energy band structure. This work demonstrates that a structural optimization combined with defect design of carbon nitride framework is a powerful approach to improve the photocatalytic activity, providing an accessible way to design highly efficient carbon-based photocatalysts.
机译:石墨碳氮化物二氧化碳光致还原作用能力,但他们的活动是有限的photogenerated低电位和机动性运营商。氮化碳nanosheets (cnn)同步装饰与功能含氰基的团体氮空缺由肤浅熔盐的路线。空前的二氧化碳气相光致还原作用可见光条件下的性能没有任何co-catalyst或照射牺牲剂,CH4-yielding率23.0亩摩尔g (1) h(1)和选择性97.9%。含氰基的集团的协同效应装饰、丰富的氮空缺和非常高的表面积,改善电子存储、电荷载流子迁移率、二氧化碳亲和力和优化能带结构。这项工作表明,结构优化结合缺陷的设计氮化碳框架是一个功能强大的方法提高光催化活性,提供设计高效的访问方法碳基催化剂。

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