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Efficient photocatalytic CO2 reduction by visible-light responsive Fe-doped WO3 nanostructures

机译:通过可见光响应Fe掺杂WO3纳米结构减少高效的光催化二氧化碳

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The nanoparticles of WO 3 doped with Fe ions have been employed for University, Kermanshah photocatalytic conversion of greenhouse gaseous of CO 2 and CH 4 under visible-light irradiation. The photocatalysts have been characterized by XRD, FESEM, EDX, Raman, UV-vis, and PL techniques. The XRD and Raman spectroscopies confirm the monoclinic structure of WO 3 nanoparticles and also the successful incorporation of Fe ions into WO 3 lattice. A red shift in Raman patterns of Fe-doped WO 3 samples indicate the partial substitution of W with Fe ions and the structural defects induced in WO 3 crystals upon doping treatment. The recorded PL signals reveal that the charge carrier recombination rate can be inhibited by doping WO 3 with Fe ions. The modified samples show high activity by photons with wavelength equal to/greater than ~500 nm, the visible-light in green region. The best photocatalytic reduction of CO 2 is provided to be 38.7% by WO 3 containing 4.18 at.% Fe under visible-light. Ethane, and formate and acetate derivatives are detected as the major products of CO 2 reduction.
机译:WO 3的纳米粒子掺杂有Feins的大学,Kermanshah光催化转化在可见光照射下Co 2和CH 4的温室气态转化。光催化剂的特征在于XRD,FESEM,EDX,拉曼,UV-Vis和PL技术。 XRD和拉曼光谱法确认WO 3纳米颗粒的单斜斜肌结构以及将Fe离子的成功掺入WO 3晶格中。 Fe掺杂WO 3样品的拉曼图案中的红色变化表明W用Fe离子的部分取代和在掺杂处理时在WO 3晶体中诱导的结构缺陷。记录的PL信号表明,通过用Fe离子掺杂WO 3可以抑制电荷载体重组率。修饰的样品通过波长等于/大于〜500nm的光子显示出高活性,绿色区域中的可见光。 CO 2的最佳光催化还原为38.7%,WO 3含有4.18.%Fe在可见光下。乙烷,甲酸盐和醋酸酯衍生物被检测为CO 2减少的主要产物。

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