TY - JOUR
T1 - Construction of WO3/CsPbBr3 S-scheme heterojunction via electrostatic Self-assembly for efficient and Long-Period photocatalytic CO2 reduction
AU - Chen, Qiao
AU - Lan, Xuefang
AU - Chen, Keshuai
AU - Ren, Qianqian
AU - Shi, Jinsheng
N1 - Publisher Copyright:
© 2022 Elsevier Inc.
PY - 2022/6/15
Y1 - 2022/6/15
N2 - Owing to the severe photogenerated carriers recombination and low oxidation ability, the photocatalytic performance of pristine CsPbBr3 is still unsatisfactory. Herein, melamine foam supported S-scheme WO3/CsPbBr3 heterojunction is successfully synthesized by electrostatic self-assembly. Because of the appropriate energy level positions, an S-scheme charge migration route between CsPbBr3 and WO3 is constructed. Under solar light irradiation, melamine foam assisted WO3/CsPbBr3 exhibits significantly enhanced photocatalytic CO2 reduction performance under liquid H2O medium, and the electron consumption rate (Relectron) reaches to 1225.50 μmol.g−1.h−1, which is 1.49- and 13.7-fold of CsPbBr3 and WO3, respectively, ascribing to the boosted charges transfer and the strengthened redox ability. Furthermore, S-scheme WO3/CsPbBr3 heterojunction also exhibits strong durability, with no noticeable reduction of product yields after four 8-h cycles.
AB - Owing to the severe photogenerated carriers recombination and low oxidation ability, the photocatalytic performance of pristine CsPbBr3 is still unsatisfactory. Herein, melamine foam supported S-scheme WO3/CsPbBr3 heterojunction is successfully synthesized by electrostatic self-assembly. Because of the appropriate energy level positions, an S-scheme charge migration route between CsPbBr3 and WO3 is constructed. Under solar light irradiation, melamine foam assisted WO3/CsPbBr3 exhibits significantly enhanced photocatalytic CO2 reduction performance under liquid H2O medium, and the electron consumption rate (Relectron) reaches to 1225.50 μmol.g−1.h−1, which is 1.49- and 13.7-fold of CsPbBr3 and WO3, respectively, ascribing to the boosted charges transfer and the strengthened redox ability. Furthermore, S-scheme WO3/CsPbBr3 heterojunction also exhibits strong durability, with no noticeable reduction of product yields after four 8-h cycles.
KW - CO photoreduction
KW - CsPbBr
KW - Durability
KW - S-scheme heterojunction
KW - WO
UR - https://www.scopus.com/pages/publications/85124941693
U2 - 10.1016/j.jcis.2022.02.044
DO - 10.1016/j.jcis.2022.02.044
M3 - 文章
C2 - 35217241
AN - SCOPUS:85124941693
SN - 0021-9797
VL - 616
SP - 253
EP - 260
JO - Journal of Colloid and Interface Science
JF - Journal of Colloid and Interface Science
ER -