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Donor-acceptor carbazole-based conjugated microporous polymers as photocatalysts for visible-light-driven H2 and O2 evolution from water splitting
被引:75
|作者:
Saber, Ahmed F.
[1
]
Elewa, Ahmed M.
[2
]
Chou, Ho-Hsiu
[2
]
EL-Mahdy, Ahmed F. M.
[1
]
机构:
[1] Natl Sun Yat Sen Univ, Dept Mat & Optoelect Sci, Kaohsiung 80424, Taiwan
[2] Natl Tsing Hua Univ, Dept Chem Engn, Hsinchu 300044, Taiwan
来源:
APPLIED CATALYSIS B-ENVIRONMENT AND ENERGY
|
2022年
/
316卷
关键词:
Conjugated microporous polymers;
Carbazole;
Visible light;
Hydrogen evolution;
Oxygen evolution;
HYDROGEN EVOLUTION;
DESIGN;
NETWORKS;
FLUORENE;
D O I:
10.1016/j.apcatb.2022.121624
中图分类号:
O64 [物理化学(理论化学)、化学物理学];
学科分类号:
070304 ;
081704 ;
摘要:
Although novel donor-acceptor conjugated microporous polymers (D-A CMPs) that absorb visible light broadly and allow the efficient isolation of photoinduced electrons and holes are being sought for water splitting photocatalysis, their elusive energy band structures have made it a challenge to produce both H-2 and O-2 simultaneously. In this paper, for the first time, we develop a series of semiconducting D-A CMPs with various sulfur and nitrogen contents and degrees of conjugation for effective photocatalytic H-2 and O-2 generation from water. Here, we used a carbazole (Cz) moiety as the donor, and pyrene (Py), triphenyltriazine (TPT), benzothiadiazole (BT), and thiazolylthiazole (TzTz) as the acceptors. The resulting D-A CMPs had large surface areas (up to 1530 m(2) g(-1)) and high thermal stabilities (T-d10: up to 623. degrees C; char yield: up to 83 wt%). Moreover, the Cz-TzTz CMP provided an excellent hydrogen evolution rate (HER), reaching 15.3 mmol g(-1) h(-1) in the presence of ascorbic acid as the sacrificial electron donor, but without the need for an additional Pt co-catalyst. Interestingly, the Cz-TPT CMP provided an excellent oxygen evolution rate (OER) of 3.38 mmol g(-1) h(-1) when using AgNO3 as a sacrificial electron acceptor; this value is competitive with those of most previously reported organic photocatalysts. These highly active CMP-based photocatalysts appear to be useful materials for solar energy harvesting and conversion.
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