光催化
半导体
接口(物质)
电子
接受者
电子受体
有机半导体
材料科学
光电子学
光化学
纳米技术
化学
物理
催化作用
凝聚态物理
生物化学
毛细管数
量子力学
毛细管作用
复合材料
作者
Rong Ji,Yuming Dong,Xinyu Sun,Yunfan Yang,Hui Zhao,Chengsi Pan,Yongfa Zhu
摘要
Nowadays, considerable attention has been directed towards the two-electron oxygen reduction for the photocatalytic H2O2 production. However, the challenge of insufficient charge separation capacity markedly constrains the rate of H2O2 production. Herein, we designed a donor-acceptor (D-A) interface characterized by rapid charge migration and separation to enhance the photocatalytic H2O2 production. Specifically, naphthalenetetracarboxylic acid-diaminotriazole as an organic molecule has been judiciously chosen as the electron donor, while perylenetetracarboxylic acid serves as the electron acceptor. The novel semiconductor with D-A interface performs markedly strong internal electric field and demonstrates an excellent H2O2 production rate of 3176 μM h-1. The pronounced internal electric field facilitated by the D-A interface effectively expedites charge separation and induces the migration of photogenerated carriers to the O2 reduction sites. This study introduces a novel paradigm for the design of D-A interfacial organic materials aimed at realizing enhanced photocatalytic capabilities.
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