Embedding Pt/TiO 2 in a Flexible Nafion Film for Enhanced Photocatalytic Hydrogen Evolution in Seawater

材料科学 海水 化学工程 光催化 嵌入 Nafion公司 纳米技术 热液循环 催化作用 基质(水族馆) 制氢 无机化学 可见光谱
作者
Yulong Zhang,Zhihao Lü,Zhu Xian,Zihan Zhang,Chengshuai Jiang,Y Chen,Yingying Cai,Panqi Wang,Qinghua Liu,Gang Lü
出处
期刊:ACS Applied Materials & Interfaces [American Chemical Society]
卷期号:18 (16): 23265-23275 被引量:1
标识
DOI:10.1021/acsami.6c02726
摘要

The photocatalytic hydrogen evolution reaction (HER) in seawater has emerged as one of the most promising technologies for the production of clean energy, yet the photocatalysts still suffer from severe salt-induced corrosion and limited mass transfer, limiting their practical applications. In addition, compared with conventional suspension-based photocatalytic systems, membrane/film-based photocatalytic systems could help to disperse catalytic nanoparticles well, realizing high photocatalytic efficiency and stability. However, the mass transportation of water molecules may be inhibited in many membrane- or film-based photocatalytic systems. Herein, we embed and immobilize Pt/TiO2 particles in a perfluorosulfonic acid resin (Nafion) film coated on glass fiber paper for enhanced activity and stability of the photocatalytic HER in simulated seawater. The flexible Nafion film embedded with Pt/TiO2, referred to as Nafion-Pt/TiO2, demonstrated outstanding photocatalytic hydrogen evolution in simulated seawater. A remarkable hydrogen production rate of 7.689 mmol·g–1·h–1 was realized, representing a 5.37-fold enhancement compared with that of bare Pt/TiO2. This enhancement can be attributed to the Nafion-induced improvements in charge separation and a localized photothermal effect enabled by thermal confinement. Furthermore, the Nafion-Pt/TiO2 system showed a superior stability, and 99.3% of its initial catalytic activity was retained after five consecutive photocatalytic cycles. This study provides valuable insights into enhancing both the activity and the stability of photocatalytic hydrogen production in seawater.
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