Xing Yanmei, Yin Liying, Zhao Yingnan, Du Zhilu, Tan Hua-Qiao, Qin Xing, Ho Wingkei, Qiu Tianyu, Li Yang-Guang
Key Laboratory of Polyoxometalate Science of the Ministry of Education, Faculty of Chemistry, Northeast Normal University, Changchun 130024, P. R. China.
Department of Science and Environmental Studies and State Key Laboratory in Marine Pollution, The Education University of Hong Kong, Tai Po, N.T., Hong Kong 999077, P. R. China.
ACS Appl Mater Interfaces. 2020 Nov 18;12(46):51555-51562. doi: 10.1021/acsami.0c15780. Epub 2020 Nov 6.
The reasonable construction of heterojunction photocatalysts with clear nanostructures and a good interface contact especially the one-dimensional/two-dimensional (1D/2D) composite heterojunction with unique morphology is considered one of the most effective strategies for designing highly efficient photocatalysts. Herein, a series of the 1D β-keto-enamine-based covalent organic framework (COF)/2D g-CN composite materials COF-CN (1:; where 1: represents the mass ratio of COF and g-CN, = 2.5, 5, 10, 15, 20) is prepared through the in situ reaction of 2,4,6-triformylphloroglucinol (Tp) and benzidine (BD) in stripped g-CN suspension. A series of characterizations, such as X-ray diffraction (XRD), Fourier transform infrared (FT-IR), scanning electron microscopy (SEM), and transmission electron microscopy (TEM), have verified their 1D/2D heterojunction structure. With the introduction of 1D COF nanobelts, the absorption of the composite is largely extended to 560 nm. Photocatalytic experiments reveal that the composite COF/CN shows evidently superior photocatalytic performance than individual COF and g-CN. The optimized COF-CN (1:10) exhibits a H production rate of 12.8 mmol g·h under visible-light (λ ≥ 420 nm) irradiation, which is about 62 and 284 times higher than those of COF and g-CN, respectively. The apparent quantum efficiency (AQE) of COF-CN (1:10) is about 15.09% under 500 nm light irradiation, which is one of the highest among previous COF- or g-CN-based materials. This work provides important strategies for designing and constructing high-efficiency heterojunction photocatalysts with multidimensional features.
构建具有清晰纳米结构和良好界面接触的异质结光催化剂,尤其是具有独特形貌的一维/二维(1D/2D)复合异质结,被认为是设计高效光催化剂最有效的策略之一。在此,通过2,4,6-三(甲酰基)间苯三酚(Tp)和联苯胺(BD)在剥离的g-CN悬浮液中的原位反应,制备了一系列一维β-酮烯胺基共价有机框架(COF)/二维g-CN复合材料COF-CN(1:;其中1:代表COF与g-CN的质量比, = 2.5、5、10、15、20)。一系列表征,如X射线衍射(XRD)、傅里叶变换红外光谱(FT-IR)、扫描电子显微镜(SEM)和透射电子显微镜(TEM),证实了它们的1D/2D异质结结构。随着一维COF纳米带的引入,复合材料的吸收在很大程度上扩展到了560 nm。光催化实验表明,复合COF/CN表现出明显优于单独的COF和g-CN的光催化性能。优化后的COF-CN(1:10)在可见光(λ≥420 nm)照射下的产氢速率为12.8 mmol g·h,分别约为COF和g-CN的62倍和284倍。在500 nm光照下,COF-CN(1:10)的表观量子效率(AQE)约为15.09%,这是此前基于COF或g-CN的材料中最高的之一。这项工作为设计和构建具有多维特征的高效异质结光催化剂提供了重要策略。