材料科学
光催化
纳米复合材料
兴奋剂
量子点
分解水
降级(电信)
纳米颗粒
纳米技术
载流子
半导体
化学工程
表面改性
光电子学
催化作用
有机化学
工程类
电信
化学
计算机科学
作者
Panpan Wu,Haizhen Liu,Ziyu Xie,Linjun Xie,Guozhong Liu,Yingchao Xu,Jing Chen,Can‐Zhong Lu
标识
DOI:10.1021/acsami.3c15957
摘要
Carbon Quantum dots (CQDs) are widely studied because of their good optical and electronic characteristics and because they can easily generate photocarriers. Nitrogen-doped CQDs (NCQDs) may exhibit improved hydrophilic, optical, and electron-transfer properties, which are conducive to photocatalytic hydrogen evolution. In this paper, NCQD-modified ZnS catalysts were successfully prepared. Under the irradiation of the full spectrum, the H2 evolution rate of the optimal catalyst 0.25 wt % NCQDs/ZnS achieves 5.70 mmol g–1 h–1, which is 11.88, 43.84, and 5.14 times the values of ZnS (0.48 mmol g–1 h–1), NCQDs (0.13 mmol g–1 h–1), and CQDs/ZnS (1.11 mmol g–1 h–1), respectively. Furthermore, it shows good stability, indicating that the modification of NCQDs prevents the photocorrosion and oxidation of ZnS. The enhanced performance is due to NCQD loading, which promotes the separation of photogenerated carriers, optimizes the structures, and increases the specific surface area. This work highlights the fact that NCQD-modified ZnS may afford a new strategy to synthesize ZnS-based photocatalysts with enhanced H2 production performance.
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