Due to the superior optical and electronic properties, all-inorganic perovskite materials have been widely used in optoelectronic device and energy conversion systems such as solar cells. However, photoelectrochemical devices with all-inorganic perovskite as photo-active material used in aqueous solution have been received not many attentions. In this work, the use of CsPbBr in photoelectrochemical system in direct contact with water is studied for the first time, considering also the post-mortem properties. Sub-micronic crystals of CsPbBr were synthetized by a conventional low temperature synthesis and the obtained materials were used to produce a photo-electrode for photo-electrochemical cell (PEC). The material was characterized and then tested to assess its electrochemical and photocatalysis properties. The particles showed high photocatalytic activity (more than 50% of Rhodamine degradation after 80 min) and promising photocurrent values of 11.7 µA cm and 2.25 ?A cm in reduction and oxidation conditions respectively. The synthesis conditions assured CsPbBr good stability in water up to 60 min. After this time, system passes from pure CsPbBr to a mixture of CsPbBr and CsPbBr still retaining part of its photoelectrochemical activity. The results showed that CsPbBr has good potentiality as photo-electrode material in water-based photoelectrochemical cell for the conversion of CO into fuels or chemicals.

CsPbBr3 for photoelectrochemical cells

Bergamini L;Sangiorgi N;Gondolini A;Sanson A
2020

Abstract

Due to the superior optical and electronic properties, all-inorganic perovskite materials have been widely used in optoelectronic device and energy conversion systems such as solar cells. However, photoelectrochemical devices with all-inorganic perovskite as photo-active material used in aqueous solution have been received not many attentions. In this work, the use of CsPbBr in photoelectrochemical system in direct contact with water is studied for the first time, considering also the post-mortem properties. Sub-micronic crystals of CsPbBr were synthetized by a conventional low temperature synthesis and the obtained materials were used to produce a photo-electrode for photo-electrochemical cell (PEC). The material was characterized and then tested to assess its electrochemical and photocatalysis properties. The particles showed high photocatalytic activity (more than 50% of Rhodamine degradation after 80 min) and promising photocurrent values of 11.7 µA cm and 2.25 ?A cm in reduction and oxidation conditions respectively. The synthesis conditions assured CsPbBr good stability in water up to 60 min. After this time, system passes from pure CsPbBr to a mixture of CsPbBr and CsPbBr still retaining part of its photoelectrochemical activity. The results showed that CsPbBr has good potentiality as photo-electrode material in water-based photoelectrochemical cell for the conversion of CO into fuels or chemicals.
2020
CsPbBr3
Photoactivity
Photoelectrochemical characterization
Water-stability
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/387305
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