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Visible-Light Activated Titania and Its Application to Photoelectrocatalytic Hydrogen Peroxide Production

机译:可见光活化二氧化钛及其在光电催化过氧化氢生产中的应用

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摘要

Photoelectrochemical cells have been constructed with photoanodes based on mesoporous titania deposited on transparent electrodes and sensitized in the Visible by nanoparticulate CdS or CdS combined with CdSe. The cathode electrode was an air–breathing carbon cloth carrying nanoparticulate carbon. These cells functioned in the Photo Fuel Cell mode, i.e., without bias, simply by shining light on the photoanode. The cathode functionality was governed by a two-electron oxygen reduction, which led to formation of hydrogen peroxide. Thus, these devices were employed for photoelectrocatalytic hydrogen peroxide production. Two-compartment cells have been used, carrying different electrolytes in the photoanode and cathode compartments. Hydrogen peroxide production has been monitored by using various electrolytes in the cathode compartment. In the presence of NaHCO , the Faradaic efficiency for hydrogen peroxide production exceeded 100% due to a catalytic effect induced by this electrolyte. Photocurrent has been generated by either a CdS/TiO or a CdSe/CdS/TiO combination, both functioning in the presence of sacrificial agents. Thus, in the first case ethanol was used as fuel, while in the second case a mixture of Na S with Na SO has been employed.
机译:光电化学电池是由基于介孔二氧化钛的光阳极构造而成的,该介孔二氧化钛沉积在透明电极上,并通过纳米颗粒CdS或CdS与CdSe的组合在可见光下敏化。阴极电极是透气的碳布,带有纳米颗粒碳。这些电池仅通过在光阳极上照射光就可以在光燃料电池模式下发挥作用,即没有偏见。阴极官能度受两电子氧还原的控制,这导致形成过氧化氢。因此,这些装置被用于光电催化过氧化氢的生产。已经使用了两室电池,它们在光电阳极室和阴极室中携带不同的电解质。已经通过在阴极室中使用各种电解质来监测过氧化氢的产生。在NaHCO的存在下,由于该电解质引起的催化作用,法拉第生产过氧化氢的效率超过100%。通过CdS / TiO或C​​dSe / CdS / TiO组合产生的光电流,均在牺牲剂存在下起作用。因此,在第一种情况下,使用乙醇作为燃料,而在第二种情况下,使用NaS与NaSO的混合物。

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