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Thickness Control of BiOIO3Enables Polarization Enhancement To Promote Carrier Separation and Pyro-PEC Performance

Authors :
Wu, Yunfei
Ruan, Mengnan
Guo, Zhengang
Wang, Chengyi
Liu, Zhifeng
Source :
The Journal of Physical Chemistry - Part C; May 2023, Vol. 127 Issue: 18 p8493-8502, 10p
Publication Year :
2023

Abstract

Pyroelectric polarization is considered to be one of the effective ways to promote carrier separation and improve the capacity of PEC water splitting. In this paper, we prepared a BiOIO3catalyst by a one-pot hydrothermal method and investigated the growth process of BiOIO3, based on which HNO3and NaOH were used to cause BiOIO3to grow selectively along the (040) direction, and the regulation mechanism was analyzed so as to improve the pyroelectric polarization intensity of BiOIO3. Under the dual excitation of light and cold–hot cycles, the optimal thickness range of BiOIO3nanoplate (40–50 nm) exhibits the highest photocurrent density of 0.134 μA/cm2at 1.23 V compared with the reversible hydrogen electrode (RHE), which is 1.6 times higher than that of the nanosheet with a thickness of 20–30 nm. A series of experimental results show that the high performance is due to suitable thickness modulation which not only enhances the polarization intensity and thus reduces the chemical reaction barrier but also facilitates the charge separation and transfer. This study provides a different way of thinking for the development of the field of pyro-photo-electric catalysis on the basis of enhanced pyroelectric polarization.

Details

Language :
English
ISSN :
19327447 and 19327455
Volume :
127
Issue :
18
Database :
Supplemental Index
Journal :
The Journal of Physical Chemistry - Part C
Publication Type :
Periodical
Accession number :
ejs62915282
Full Text :
https://doi.org/10.1021/acs.jpcc.3c01968