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Visible-light-driven photoreduction of CO2 to CO over porous nitrogen-deficient carbon nitride nanotubes

机译:Visible-light-driven二氧化碳的光致还原作用有限在多孔nitrogen-deficient碳氮化纳米管

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摘要

The solar energy-driven photoreduction of CO2 with H2O to hydrocarbon fuels is an interesting but challenging topic. Herein, we report porous nitrogen-deficient carbon nitride nanotubes with tunable nitrogen vacancies (NCN-T) for visible-light-driven photoreduction of CO2 to CO in the absence of any cocatalyst and sacrificial reagent. The NCN-T series were prepared via the thermal etching approach, which showed a specific surface area of up to 207 m(2) g(-1) and a CO2 uptake capacity of 4.06 wt%. It was indicated that the nitrogen vacancies in NCN-T not only promoted the utilization of visible-light by extending the spectral response range, but also served as centres for capturing photoexcited electrons, hence, efficiently inhibiting the recombination of radiative electron-hole pairs. As a consequence, the NCN-T catalysts achieved the highest CO formation rate of 43.9 mol g(-1) h(-1), which was >9 times higher than that obtained over the bulk counterpart.
机译:二氧化碳的太阳能能源驱动的光致还原作用水碳氢化合物燃料,但很有趣具有挑战性的话题。nitrogen-deficient氮化碳纳米管可调氮空缺(NCN-T)visible-light-driven二氧化碳的光致还原作用有限在缺乏任何助催化剂和牺牲试剂热腐蚀的方法,它显示一个特定的面积207 m (2) g(1)和二氧化碳4.06 wt %的吸收能力。在NCN-T不仅氮空缺促进了可见光的利用率扩展光谱响应范围,但也担任中心捕获光激的电子,因此,有效地抑制辐射电子空穴对的复合。因此,NCN-T催化剂实现公司形成率最高的43.9摩尔g (1)h(1) > 9倍获得了大部分。

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