Read Carrie G, Park Yiseul, Choi Kyoung-Shin
Department of Chemistry, Purdue University, West Lafayette, Indiana 47907, United States.
J Phys Chem Lett. 2012 Jul 19;3(14):1872-6. doi: 10.1021/jz300709t. Epub 2012 Jul 2.
A new electrodeposition route was developed to prepare p-type CuFeO2 as a thin film-type electrode for use as a photocathode in a solar water splitting cell. The resulting p-CuFeO2 film has a bandgap energy of ca. 1.55 eV, with its conduction band edge located at a more negative potential than the reduction potential of water. Various photoelectrochemical properties of the p-CuFeO2 electrode were investigated, and its photoelectrochemical hydrogen production in 1 M NaOH solution was confirmed by gas chromatography. The incident photon-to-current conversion efficiency plot confirmed that p-CuFeO2 has the ability to utilize the entire range of visible light.
开发了一种新的电沉积路线来制备p型CuFeO₂,作为薄膜型电极用作太阳能水分解电池中的光阴极。所得的p-CuFeO₂薄膜的带隙能量约为1.55 eV,其导带边缘位于比水的还原电位更负的电位。研究了p-CuFeO₂电极的各种光电化学性质,并通过气相色谱法确认了其在1 M NaOH溶液中的光电化学产氢。入射光子到电流转换效率图证实p-CuFeO₂有能力利用整个可见光范围。