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Effects of Anions and pH on the Stability of ZnO Nanorods for Photoelectrochemical Water Splitting

机译:阴离子和pH值对光电化学水分解用ZnO纳米棒稳定性的影响

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This work demonstrates the improved stability of zinc oxide nanorods (ZnO NRs) for the photoanode of solar water splitting under voltage biases by the addition of borate or carbonate ions in the aqueous electrolyte with suitable pH ranges. The ZnO NRs prepared by the hydrothermal method are highly active and stable at pH 10.5 in both borate and carbonate buffer solutions, where a photocurrent higher than 99% of the initial value has been preserved after 1 h polarization at 1.5 V (vs reversible hydrogen electrode) under AM 1.5G. The optimal pH ranges with a minimum morphological change of ZnO NRs for photoelectrochemical (PEC) water splitting in borate and carbonate buffer solutions are 9–13 and 10–12, respectively. The working pH range for PEC water splitting on ZnO NR photoanodes can be extended to 8.5–12.5 by the combination of borate and carbonate anions. The lifetime of ZnO NR photoanodes can be synergistically prolonged for over an order of magnitude when the electrolyte is the binary electrolyte consisting of borate and carbonate in comparison with these two anions used individually. On the basis of the experimental results, a possible mechanism for the protective behavior of ZnO in borate and carbonate solutions is proposed. These findings can be used to improve the lifetime of other high-performance ZnO-based catalysts and to understand the photocorrosive and protective behaviors of ZnO NRs in the borate and carbonate solutions.
机译:这项工作表明,通过在适当pH范围内的水性电解质中添加硼酸根或碳酸根离子,可在偏压下将太阳能氧化光阳极的氧化锌纳米棒(ZnO NRs)的稳定性提高。通过水热法制备的ZnO NRs在硼酸盐和碳酸盐缓冲溶液中均具有很高的活性,并且在pH 10.5时稳定,在1.5 V极化1 h后(相对于可逆氢电极),在此电流中保留了高于初始值99%的光电流。 )在AM 1.5G下。在硼酸盐和碳酸盐缓冲溶液中进行光化学(PEC)水分解时,ZnO NR形态发生最小变化的最佳pH范围分别为9-13和10-12。通过硼酸根和碳酸根阴离子的结合,在ZnO NR光阳极上进行PEC水分解的工作pH范围可以扩展到8.5–12.5。当电解质是由硼酸根和碳酸根组成的二元电解质时,与单独使用的这两种阴离子相比,ZnO NR光阳极的寿命可以协同延长一个数量级。根据实验结果,提出了在硼酸盐和碳酸盐溶液中ZnO保护行为的可能机理。这些发现可用于提高其他高性能ZnO基催化剂的寿命,并了解ZnO NR在硼酸盐和碳酸盐溶液中的光腐蚀和保护行为。

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