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首页> 外文期刊>Angewandte Chemie >Conversion of Carbon Dioxide by Methane Reforming under Visible-Light Irradiation: Surface-Plasmon-Mediated Nonpolar Molecule Activation
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Conversion of Carbon Dioxide by Methane Reforming under Visible-Light Irradiation: Surface-Plasmon-Mediated Nonpolar Molecule Activation

机译:可见光照射下甲烷重整制二氧化碳的转化:表面等离子体介导的非极性分子活化

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摘要

A novel CO2 photoreduction method, CO2 conversion through methane reforming into syngas (DRM) was adopted as an efficient approach to not only reduce the environmental concentration of the greenhouse gas CO2 but also realize the net energy storage from solar energy to chemical energy. For the first time it is reported that gold, which was generally regarded to be inactive in improving the performance of a catalyst in DRM under thermal conditions, enhanced the catalytic performance of Rh/SBA-15 in DRM under visible-light irradiation (1.7 times, CO2 conversion increased from 2100 to 3600 mu molg(-1)s(-1)). UV/Vis spectra and electromagnetic field simulation results revealed that the highly energetic electrons excited by local surface plasmon resonances of Au facilitated the polarization and activation of CO2 and CH4 with thermal assistance. This work provides a new route for CO2 photoreduction and offers a distinctive method to photocatalytically activate nonpolar molecules.
机译:采用一种新颖的二氧化碳光还原方法,即通过甲烷重整成合成气(DRM)的方式将二氧化碳转化为有效的方法,不仅可以降低温室气体二氧化碳的环境浓度,还可以实现从太阳能到化学能的净能量存储。首次报道,通常认为金在热条件下不能改善DRM中催化剂的活性的金,在可见光照射下提高了Rh / SBA-15在DRM中的催化性能(1.7倍)。 ,CO2转化率从2100增加到3600 mu molg(-1)s(-1))。 UV / Vis光谱和电磁场模拟结果表明,金的局部表面等离振子共振激发的高能电子在热辅助下促进了CO2和CH4的极化和活化。这项工作为CO2光还原提供了一条新途径,并提供了一种独特的方法来光催化活化非极性分子。

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