Li Kui, Zhang Wei-De
Department of Chemistry, South China University of Technology, 381 Wushan Road, Guangzhou, 510640, P. R. China.
Small. 2018 Mar;14(12):e1703599. doi: 10.1002/smll.201703599. Epub 2018 Feb 12.
Conjugated polymers with tailored donor-acceptor units have recently attracted considerable attention in organic photovoltaic devices due to the controlled optical bandgap and retained favorable separation of charge carriers. Inspired by these advantages, an effective strategy is presented to solve the main obstructions of graphitic carbon nitride (g-C N ) photocatalyst for solar energy conversion, that is, inefficient visible light response and insufficient separation of photogenerated electrons and holes. Donor-π-acceptor-π-donor polymers are prepared by incorporating 4,4'-(benzoc 1,2,5 thiadiazole-4,7-diyl) dianiline (BD) into the g-C N framework (UCN-BD). Benefiting from the visible light band tail caused by the extended π conjugation, UCN-BD possesses expanded visible light absorption range. More importantly, the BD monomer also acts as an electron acceptor, which endows UCN-BD with a high degree of intramolecular charge transfer. With this unique molecular structure, the optimized UCN-BD sample exhibits a superior performance for photocatalytic hydrogen evolution upon visible light illumination (3428 µmol h g ), which is nearly six times of that of the pristine g-C N . In addition, the photocatalytic property remains stable for six cycles in 3 d. This work provides an insight into the synthesis of g-C N -based D-π-A-π-D systems with highly visible light response and long lifetime of intramolecular charge carriers for solar fuel production.
具有定制供体-受体单元的共轭聚合物由于其可控的光学带隙和保留的有利电荷载流子分离,最近在有机光伏器件中引起了相当大的关注。受这些优点的启发,提出了一种有效的策略来解决石墨相氮化碳(g-CN)光催化剂在太阳能转换方面的主要障碍,即低效的可见光响应和光生电子与空穴的分离不足。通过将4,4'-(苯并[c][1,2,5]噻二唑-4,7-二基)二苯胺(BD)掺入g-CN框架(UCN-BD)中来制备供体-π-受体-π-供体聚合物。受益于扩展的π共轭引起的可见光带尾,UCN-BD具有扩大的可见光吸收范围。更重要的是,BD单体还充当电子受体,这赋予UCN-BD高度的分子内电荷转移。凭借这种独特的分子结构,优化后的UCN-BD样品在可见光照射下表现出优异的光催化析氢性能(3428 μmol h g),几乎是原始g-CN的六倍。此外,光催化性能在3天内六个循环中保持稳定。这项工作为合成具有高可见光响应和长寿命分子内电荷载流子的基于g-CN的D-π-A-π-D系统用于太阳能燃料生产提供了见解。