Perovskite CsCuClxBr3-x Microcrystals

Band Structure, Photochemical Stability, and Photocatalytic Properties

verfasst von
Shuang Chao Tang, Yan Jie Li, Jing Yang, Ting Zhao, Jie Tian, Yan Jie Wang, Zhuo Yu Ji, Yu Li, Yi Tao Dai, Tao He, Yong Wei Zhang, Alexei V. Emeline, Qi Pang, Detlef W. Bahnemann, Jia Hong Pan
Abstract

Although Pb-based metal halide perovskites (MHPs) have excellent photoelectric characteristics, its toxicity remains a limiting factor for its widespread application. In the paper, a series of CsCuClxBr3-x (x=1, 2, 3) MHPs microcrystals were developed and their hydrogen evolution performance in ethanol and HX (X=Cl, Br) were also studied. Among them, CsCuCl3 microcrystals exhibit high hydrogen evolution performance in both HX and ethanol, attributed to its longest average lifetime and suitable band structure. Additionally, the effect of different sacrificial agents on photocatalytic hydrogen production indicates that the photogenerated hole (h+) plays a critical role. MHPs can maintain a dynamic equilibrium of dissolution and precipitation in HX saturated aqueous solutions, thereby overcoming the stability issues associated with perovskite. The phase transition of CsCuClxBr3-x during photocatalysis is monitored by XRD technique. CsCuCl3 shows high stability in saturated HCl aqueous solution, and excellent photocatalytic performance with a hydrogen production rate of CsCuCl3 microcrystals reached 103.98 μmol g−1 at 210 min. Our study expands the development prospects of CsCuCl3 in the field of photocatalytic solar fuel generation.

Organisationseinheit(en)
Institut für Technische Chemie
Externe Organisation(en)
North China Electric Power University (NCEPU)
Guangxi University
A-STAR
Graduate University of Chinese Academy of Sciences
National Center for Nanoscience and Technology
University of Science and Technology of China
Staatliche Universität Sankt Petersburg
Typ
Artikel
Journal
CHEMSUSCHEM
Anzahl der Seiten
11
ISSN
1864-5631
Publikationsdatum
23.12.2024
Publikationsstatus
Angenommen/Im Druck
Peer-reviewed
Ja
ASJC Scopus Sachgebiete
Umweltchemie, Allgemeine chemische Verfahrenstechnik, Allgemeine Materialwissenschaften, Allgemeine Energie
Ziele für nachhaltige Entwicklung
SDG 7 – Erschwingliche und saubere Energie
Elektronische Version(en)
https://doi.org/10.1002/cssc.202402094 (Zugang: Geschlossen)