论文标题

INP(100)与HCl和H $ _2 $接触的界面结构,因此$ _4 $由反射各向异性光谱研究

The Interfacial Structure of InP(100) in Contact with HCl and H$_2$SO$_4$ studied by Reflection Anisotropy Spectroscopy

论文作者

Löw, Mario, Guidat, Margot, Kim, Jongmin, May, Matthias M.

论文摘要

磷化磷化物和衍生化合物半导体是由于其多功能光电动性特性而经常参与高效太阳能分裂的材料。然而,表面腐蚀通常会根据该材料类别的类别恶化光电化学太阳能电池的性能。据报道,(照片)电化学表面功能化通过结合蚀刻和受控腐蚀来保护表面。然而,总体所涉及的过程尚未完全理解。因此,在操作数条件下访问电化学界面结构对于更详细的理解至关重要。获得结构见解的一种方法是使用操作反射各向异性光谱。该技术允许对界面结构进行时间分辨研究,同时在电解质中应用电势。在这项研究中,P掺杂的INP(100)表面在两个不同电解质的阳极和阴极电位之间循环,盐酸和硫酸。对于低10 mM电解质浓度,我们观察到与降低阴极电位范围内表面氧化物相有关的可逆过程,该过程已在开放式电位势近接近。然而,较高的0.5 N浓度已经导致初始表面腐蚀。

Indium phosphide and derived compound semiconductors are materials often involved in high-efficiency solar water splitting due to their versatile opto-electronic properties. Surface corrosion, however, typically deteriorates the performance of photoelectrochemical solar cells based on this material class. It has been reported that (photo)electrochemical surface functionalisation protects the surface by combining etching and controlled corrosion. Nevertheless, the overall involved process is not fully understood. Therefore, access to the electrochemical interface structure under operando conditions is crucial for a more detailed understanding. One approach for gaining structural insight is the use of operando reflection anisotropy spectroscopy. This technique allows the time-resolved investigation of the interfacial structure while applying potentials in the electrolyte. In this study, p-doped InP(100) surfaces are cycled between anodic and cathodic potentials in two different electrolytes, hydrochloric acid and sulphuric acid. For low, 10 mM electrolyte concentrations, we observe a reversible processes related to the reduction of a surface oxide phase in the cathodic potential range which is reformed near open-circuit potentials. Higher concentrations of 0.5 N, however, already lead to initial surface corrosion.

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