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首页> 外文期刊>RSC Advances >A sol-gel derived, copper-doped, titanium dioxide-reduced graphene oxide nanocomposite electrode for the photoelectrocatalytic reduction of CO2 to methanol and formic acid
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A sol-gel derived, copper-doped, titanium dioxide-reduced graphene oxide nanocomposite electrode for the photoelectrocatalytic reduction of CO2 to methanol and formic acid

机译:溶胶-凝胶衍生的掺杂铜的二氧化钛还原氧化石墨烯纳米复合电极,用于光电催化将CO2还原为甲醇和甲酸

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摘要

A classic Cu-RGO-TiO2 photoelectrocatalyst was fabricated by a facile sol-gel method, deposited on ITO film via electrophoretic deposition and characterized by XRD, FESEM, UV-Vis and FT-IR spectroscopy. A uniformly distributed porous composite film was observed on the ITO substrate with an average particle size of 18 nm. A lower photoluminescence response of the Cu-RGO-TiO2 sample indicates better electron/hole separation upon irradiation. A maximum 1.31 mA cm(-2) photocurrent density was observed at -0.61 V bias potential under solar simulator irradiation during CO2 photoelectrocatalysis. Formic acid and methanol were the main products, but longer reaction times led to increased methanol formation. The estimated current efficiency of the production of formic acid and methanol was 32.47%, and the estimated rates of formation of formic acid and methanol were 255 mu mol h(-1) cm(-2) and 189.06 mu mol h(-1) cm(-2), respectively.
机译:通过简便的溶胶-凝胶法制备了经典的Cu-RGO-TiO2光电催化剂,通过电泳沉积法沉积在ITO膜上,并通过XRD,FESEM,UV-Vis和FT-IR光谱表征。在ITO基板上观察到均匀分布的多孔复合膜,其平均粒径为18nm。 Cu-RGO-TiO2样品的较低的光致发光响应表明照射后电子/空穴的分离更好。在CO2光电催化过程中,在太阳模拟器照射下,在-0.61 V偏压下观察到最大1.31 mA cm(-2)的光电流密度。甲酸和甲醇是主要产物,但较长的反应时间导致甲醇形成增加。估计当前生产甲酸和甲醇的效率为32.47%,估计形成甲酸和甲醇的速率为255μmol h(-1)cm(-2)和189.06μmol h(-1) cm(-2)。

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