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Mixed-Metal Semiconductor Anodes for Electrochemical Water Splitting and Reactive Chlorine Species Generation: Implications for Electrochemical Wastewater Treatment

机译:用于电解水分解和生成活性氯物种的混合金属半导体阳极:对电化学废水处理的意义

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摘要

A procedure for the preparation of semiconductor anodes using mixed-metal oxides bound together and protected with a TiO_2 nanoglue has been developed and tested in terms of the relative efficiencies of the oxygen evolution (OER), the reactive chlorine species evolution (RCS), and the hydrogen evolution (HER) reactions. The composition of the first anode is a Ti metal substrate coated with IrTaO_x and overcoated with TiO_2 (P_(25)) that was mixed with TiO_2 nanogel, while the second anode consists of a Ti metal substrate coated with IrTaO_x and an over-coating layer of La-doped sodium tantalate, NaTaO_3:La. The experimental efficiencies for water splitting ranged from 62.4% to 67.5% for H_2 evolution and 40.6% to 60.0% for O_2 evolution. The corresponding over-potentials for the Ti/IrTa-TiO_2 and Ti/IrTa-NaTaO_3:La anodes coupled with stainless steel cathodes of the same dimensions were determined to be 437 mV and 367 mV for the OER, respectively, and 239 mV and 205 mV for RCS, respectively. The preparation procedure described herein should allow for easier production of large-surface area anodes at lower costs than standard methods.
机译:已经开发了使用结合在一起并用TiO_2纳米胶保护的混合金属氧化物制备半导体阳极的方法,并根据氧释放(OER),反应性氯物种释放(RCS)和氢释放(HER)反应。第一阳极的组成是涂覆有IrTaO_x并覆盖有TiO_2的TiO_2(P_(25))的Ti金属基底,而第二阳极由涂覆有IrTaO_x的Ti金属基底和外涂层组成La掺杂的钽酸钠NaTaO_3:La的制备。 H_2析出的水分解实验效率介于62.4%至67.5%,O_2析出的实验效率介于40.6%至60.0%。对于OER,Ti / IrTa-TiO_2和Ti / IrTa-NaTaO_3:La阳极与相同尺寸的不锈钢阴极耦合的相应过电势分别确定为437 mV和367 mV,以及239 mV和205分别为RCS的mV。与标准方法相比,本文所述的制备程序应允许以较低的成本更容易地生产大表面积的阳极。

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