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Photocatalytic reduction of CO2 with H2O vapor under visible light over Ce doped ZnFe2O4

机译:光催化还原二氧化碳与水的蒸汽在可见光/ Ce掺杂ZnFe2O4

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In this work, ZnFe2O4 spinels doped with different Ce contents were synthesized through a sol-gel method and their morphologies, structures, optical and electronic properties, adsorption capacity for CO2 and activities for CO2 photoreduction with H2O vapor were investigated. The results show that the presence of Ce~(3+) in the ZnFe2O4 lattice and CeO2 particles on the surface of ZnFe2O4 can enhance photoabsorption in the visible light region, and promote the effective separation of photogenerated electron-hole pairs. CO2- TPD and in situ FTIR spectroscopy confirmed that monodentate carbonate (m-CO_3~(2-)), bidentate carbonate (b-CO_3~(2-)) and bidentate bicarbonate (b-HCO_3~-) were the main surface species for the coadsorption of CO2 and H2O on photocatalyst surfaces. The addition of Ce strengthens the chemical interaction between CO2 and photocatalyst surfaces and obviously increases the adsorption amount of b-HCO_3~- and b-CO_3~(2-)species. As a result, all Ce-doped samples exhibit much higher production rates of H2, CO and CH4 when compared to undoped ZnFe2O4, and ZFC0.2 has the highest photocatalytic activity among all samples, for which H2, CO and CH4 production rates of 19.9, 1.7 and 9.9 μmol gcat~(-1) h~(-1) were achieved, about 4.6, 4.3 and 4.2 times that of undoped ZnFe2O4, respectively.
机译:在这个工作中,ZnFe2O4不同掺杂尖晶石Ce内容通过溶胶-凝胶法合成了方法和他们的形态,结构,光学和电子特性,吸附为二氧化碳。二氧化碳和活动能力光致还原作用与水蒸汽进行调查。结果表明,Ce的存在~ (3 +)ZnFe2O4晶格和CeO2粒子ZnFe2O4表面可以提高光吸收可见光区域,促进有效的分离photogenerated电子空穴对。光谱证实monodentate碳酸盐(m-CO_3 ~(2 -)),双齿碳酸盐(b-CO_3 ~ (2 -))和双齿碳酸氢盐(b-HCO_3 ~ -)主要表面物种的共吸附二氧化碳和水在光催化剂表面。Ce加强化学相互作用二氧化碳和光催化剂表面之间明显的吸附量增加b-HCO_3 ~ -和b-CO_3 ~(2 -)的物种。所有Ce-doped样品表现出高得多生产的H2, CO, CH4相比无掺杂ZnFe2O4, ZFC0.2最高光催化活性在所有样本中,H2, CO, CH4生产率为19.9,1.7和9.9μ摩尔gcat ~ (1) h ~(1)实现,无掺杂的4.6、4.3和4.2倍

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