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Chemical Bias Coupled Photoelectrochemical Zero Bias Hydrogen Generation Utilizing Self-Assembled TiO_2 Nanoarchitecture Electrode

机译:利用自组装TiO_2纳米建筑电极的化学偏置耦合光电化学零偏置氢气

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Photoelectrochemical zero bias hydrogen generation has been achieved with self-assembled nanoporous anatase type TiO_2 (SANAT) photoelectrode and chemical bias. The SANAT fabricated using halogen free conventional electrolytes by anodization exhibits more than 2 times superior performance to rutile single crystal electrodes in photoelectrolysis of water. The chemical bias assisted cell consists of two separate compartments connected by a liquid junction. The SANAT anode is immersed in alkaline electrolyte, Pt cathode is in acidic electrolyte. The use of electrolytes of two different pH values produces a chemical bias of 0.059 ΔpH V due to the proton concentration gradient. Under zero bias condition, photocurrent sufficient for photolysis of water was observed. Hydrogen evolution was visible at counter electrode without the application of any external voltage. We call this system fuel type photoelectrochemical zero bias hydrogen generation or water splitting.
机译:通过自组装的纳米多孔锐钛矿型TiO_2(SANAT)光电和化学偏压,实现了光电化学零偏压氢产生。使用阳极氧化使用卤素免常规电解质制造的SANAt在水的光电解中的金红石单晶电极上表现出超过2倍的优异性能。化学偏压辅助电池由两个单独的隔室组成,通过液体结连接。 Sanat阳极浸入碱性电解质中,Pt阴极是酸性电解质。由于质子浓度梯度,两种不同pH值的电解质的使用产生0.059ΔphV的化学偏差。在零偏压条件下,观察到足以光解水的光电流。在对电极可见氢进化,而无需应用任何外部电压。我们称该系统燃料型光电化学零偏压氢生成或水分裂。

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