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3D Porous Pyramid Heterostructure Array Realizing Efficient Photo-Electrochemical Performance

机译:实现高效光电性能的3D多孔金字塔异质结构阵列

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Direct photo-electrochemical (PEC) water splitting is of great practical interest for developing a sustainable energy systems, but remains a big challenge owing to sluggish charge separation, low efficiency, and poor stability. Herein, a 3D porous In2O3/In2S3 pyramid heterostructure array on a fluorine-doped tin oxide substrate is fabricated by an ion exchange-induced synthesis strategy. Based on the synergistic structural and electronic modulations from density functional theory calculations and experimental observations, 3D porous In2O3/In2S3 photoanode by the protective layer delivers a low onset potential of approximate to 0.02 V versus reversible hydrogen electrode (RHE), the highest photocurrent density of 8.2 mA cm(-2) at 1.23 V versus RHE among all the In2S3 photoanodes reported to date, an incident photon-to-current efficiency of 76% at 400 nm, and high stability over 20 h for PEC water splitting are reported. This work provides an alternative promising prototype for the design and construction of novel heterostructures in robust PEC water splitting applications.
机译:直接光电化学(PEC)分解水对于开发可持续能源系统具有重大的实际意义,但由于电荷分离缓慢,效率低和稳定性差,仍然是一个巨大的挑战。在此,通过离子交换诱导的合成策略在掺氟的氧化锡衬底上制造3D多孔In 2 O 3 / In 2 S 3金字塔异质结构阵列。基于密度泛函理论计算和实验观察的协同结构和电子调制,与可逆氢电极(RHE)相比,保护层的3D多孔In2O3 / In2S3光电阳极提供了大约0.02 V的低启动电势,是最高的光电流密度。迄今为止,据报道,所有In2S3光电阳极在1.23 V相对于RHE的条件下为8.2 mA cm(-2),在400 nm处的入射光子电流效率为76%,PEC水分解在20小时内具有很高的稳定性。这项工作为健壮的PEC分水应用中新型异质结构的设计和构造提供了一个有希望的替代原型。

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