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Ultrathin Ti-doped WO3 nanosheets realizing selective photoreduction of CO2 to CH3OH

机译:超薄Ti掺杂WO3纳米片实现CO2选择性光还原为CH3OH

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Arduous CO2 activation and sluggish charge transfer retard the photoreduction of CO2 to CH3OH with high efficiency and selectivity. Here, we fabricate ultrathin Ti-doped WO3 nanosheets possessing approving active sites and optimized carrier dynamics as a promising catalyst. Quasi in situ X-ray photoelectron spectroscopy and synchrotron–radiation X-ray absorption near-edge spectroscopy firmly confirm that the true active sites for CO2 reduction are the W sites rather the Ti sites, while the Ti dopants can facilitate charge transfer, which accelerates the generation of crucial COOH* intermediates as revealed by in situ Fourier-transform infrared spectroscopy and density functional theory calculations. Besides, the Gibbs free energy calculations also validate that Ti doping can lower the energy barrier of CO2 activation and CH3OH desorption by 0.22 eV and 0.42 eV, respectively, thus promoting the formation of CH3OH. In consequence, the Ti-doped WO3 ultrathin nanosheets show a superior CH3OH selectivity of 88.9 and reach a CH3OH evolution rate of 16.8 μmol g−1 h−1, about 3.3 times higher than that on WO3 nanosheets. This work sheds light on promoting CO2 photoreduction to CH3OH by rational elemental doping.
机译:艰巨的二氧化碳活化和缓慢传输延迟二氧化碳的光致还原作用CH3OH效率高和选择性。我们制造超薄Ti-doped WO3 nanosheets拥有批准活动网站和优化航空动力学是一个有前途的催化剂。原位x射线光电子能谱和电脑同步x射线吸收靠近边缘光谱学坚定地确认真正的活跃W网站,而网站的二氧化碳减少透明国际的网站,而钛掺杂物可以促进电荷转移,加速的一代重要的羧基*中间体所显示的原位傅里叶变换红外光谱和密度泛函理论计算。吉布斯自由能计算验证钛掺杂可以降低的能量势垒二氧化碳活化和CH3OH解吸0.22 eV分别和0.42 eV,从而促进CH3OH的形成。WO3超薄nanosheets CH3OH优越选择性为88.9%,达到CH3OH进化率16.8μ摩尔克−1 h−1,约3.3倍比WO3 nanosheets。促进二氧化碳CH3OH的光致还原作用理性的元素掺杂。

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