论文标题

铁电表面和超级域的大型印刷

Large-area printing of ferroelectric surface and super-domains for efficient solar water splitting

论文作者

Tian, Yu, Wei, Yaqing, Pei, Minghui, Cao, Rongrong, Gu, Zhenao, Wang, Jing, Liu, Kunhui, Shang, Dashan, Niu, Jiebin, An, Xiaoqiang, Long, Run, Zhang, Jinxing

论文摘要

光电子的表面电子结构确定了光电化学水分的活性和效率,但是其表面结构和界面化学反应的控制仍然具有挑战性。在这里,我们使用铁电BifeO3作为模型系统,通过构建羟基键表面的大面积来证明有效且可控制的水分分裂反应。在该表面的带边缘位置的上班偏移可以使并增强界面孔和电子通过羟基活性位点的转移,从而同时增强了氧气和氢的发展。此外,用微观核对板向上/向下电场打印铁电超构域将还原/氧化催化位点的分布分开,增强了电荷分离并导致光电流的数量级增加。这种大面积可打印的铁电表面和超级域为可控和高效的光催化提供了替代平台。

Surface electronic structures of the photoelectrodes determine the activity and efficiency of the photoelectrochemical water splitting, but the controls of their surface structures and interfacial chemical reactions remain challenging. Here, we use ferroelectric BiFeO3 as a model system to demonstrate an efficient and controllable water splitting reaction by large-area constructing the hydroxyls-bonded surface. The up-shift of band edge positions at this surface enables and enhances the interfacial holes and electrons transfer through the hydroxyl-active-sites, leading to simultaneously enhanced oxygen and hydrogen evolutions. Furthermore, printing of ferroelectric super-domains with microscale checkboard up/down electric fields separates the distribution of reduction/oxidation catalytic sites, enhancing the charge separation and giving rise to an order of magnitude increase of the photocurrent. This large-area printable ferroelectric surface and super-domains offer an alternative platform for controllable and high-efficient photocatalysis.

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