材料科学
光催化
氧化还原
氮化碳
三嗪
载流子
Boosting(机器学习)
分解水
光催化分解水
半导体
光化学
量子效率
氮化物
能量转换
纳米技术
化学工程
科技与社会
碳纤维
能量转换效率
人工光合作用
电场
可持续能源
电荷(物理)
光子学
作者
Qian Wang,Dandan Zheng,Zhiming Pan,Wandong Xing,Sibo Wang,Yidong Hou,Masakazu Anpo,Guigang Zhang
标识
DOI:10.1002/adfm.202501889
摘要
Abstract Poly (triazine imide) (PTI), a crystalline allotrope of polymeric carbon nitride, holds great promise for photocatalytic overall water splitting (OWS). However, previous results reveal that both H 2 and O 2 evolution cocatalysts prefer to deposit on the prismatic facets, which results in the undesired backward reaction and current unsatisfied quantum efficiency for OWS reaction. Herein, in situ decoration with heptazine based carbon nitride (HCN) at the interface of PTI is successfully employed to construct S‐scheme hetero‐phase junctions. The built‐in electric field at the interface of PTI and HCN endows directed carrier separation, thereby enabling the separation of redox sites, as validated by theoretical and experimental results. Accordingly, the as‐synthesized PTI/HCN with spatially separated charge carriers and restrained backward reaction achieves a solar‐to‐hydrogen energy conversion efficiency of 0.35% for photocatalytic OWS reaction.
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