光催化
材料科学
纳米片
金红石
复合数
制氢
热液循环
氢
化学工程
水热合成
纳米技术
催化作用
复合材料
化学
工程类
有机化学
生物化学
作者
Ke Wei,Jiuxiang Yang,Fang-Yuan Bai,Yuan-Sheng Shen,Kai Liu,Jing Liu,Lihua Chen,Yu Li,Bao‐Lian Su
出处
期刊:ACS applied energy materials
[American Chemical Society]
日期:2023-05-09
卷期号:6 (10): 5456-5463
被引量:17
标识
DOI:10.1021/acsaem.3c00541
摘要
Ti3C2 MXene has been extensively studied in the field of photocatalytic hydrogen production since its discovery due to the large specific surface area and adjustable surface groups. However, the weak interaction at the interface of Ti3C2-based composites leads to a high energy barrier, which is not conducive to carrier transport. Herein, we propose the construction of a sandwich Ti3C2/R-TiO2 composite photocatalyst by in situ growing rutile TiO2 (R-TiO2) nanoneedles in Ti3C2 MXene through NaOH oxidation treatment and the microwave hydrothermal method. This in situ synthesis can make Ti3C2 MXene and TiO2 nanoneedles closely link together, which is conducive to carrier transport and material stability. The best Ti3C2/R-TiO2 composite achieves an excellent hydrogen production rate of 1.62 mmol g–1 h–1, as endowed by the 2D nanosheet-constructed sandwich structure, an increased specific surface area, and improved charge carrier separation and transport.
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