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Photoelectrochemical oxidation of water using La(Ta,Nb)O2N modified electrodes

机译:La(Ta,Nb)O2N修饰电极对水的光电化学氧化

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Lanthanum tantalum niobium oxynitride [La(Ta,Nb)O2N] powders were prepared with different Nb/Ta ratios by conventional solid state reaction. La(Ta,Nb)O2N photoanodes were fabricated by electrophoretic deposition of La(Ta,Nb)O2N suspension in acetone onto ITO substrate. The La(Ta,Nb)O2N photoanodes were found to exhibit photoelectrochemical activity for water oxidation reaction in alkaline solution. Subsequently, a cobalt-phosphate based oxygen evolution catalyst (CoPi-OEC) was photodeposited onto the surface of the La(Ta,Nb)O2N catalyst to improve the photoelectrochemical performance. In the presence of CoPi catalyst, the photocurrent-voltage characteristics of the La(Ta,Nb)O2N electrodes were enhanced with its effect more pronounced at lower potentials. A stable photocurrent density of 20 mA/cm(2) at 1.2 V vs SCE was achieved under the illumination using alkaline phosphate solution with pH 13. Relative to the La(Ta,Nb)O2N photoanodes, nearly three times higher photocurrent density was observed at 1.2 V vs SCE for a CoPi/La(Ta,Nb)O2N photoelectrode. Perovsldte-based oxide-nitrides modified with suitable cocatalyst of CoPi, have been shown as a new pathway towards substantial photoelectrochemical current gain during the PEC water splitting reaction. (C) 2015 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:通过常规固相反应制备了具有不同Nb / Ta比的镧钽氧氮化铌[La(Ta,Nb)O2N]粉末。 La(Ta,Nb)O2N光电阳极是通过将La(Ta,Nb)O2N在丙酮中的悬浮液电泳沉积到ITO基板上而制成的。发现La(Ta,Nb)O2N光阳极对碱性溶液中的水氧化反应具有光电化学活性。随后,将磷酸钴基氧气析出催化剂(CoPi-OEC)光沉积到La(Ta,Nb)O2N催化剂的表面上,以提高光电化学性能。在CoPi催化剂的存在下,La(Ta,Nb)O2N电极的光电流-电压特性得到增强,其效果在较低电势下更为明显。在使用pH为13的碱性磷酸盐溶液的照明下,在1.2 V vs SCE下达到了20 mA / cm(2)的稳定光电流密度。相对于La(Ta,Nb)O2N光阳极,观察到的光电流密度几乎高出三倍。 CoPi / La(Ta,Nb)O2N光电极在1.2 V vs SCE下的电压。用合适的CoPi助催化剂改性的基于Perovsldte的氮氧化物已被证明是在PEC水分解反应过程中获得大量光电化学电流增益的新途径。 (C)2015 Hydrogen Energy Publications LLC。由Elsevier Ltd.出版。保留所有权利。

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