A portable photocatalytic fuel cell based on TiO2 nanorod photoanode for wastewater treatment and efficient electricity generation

被引:5
|
作者
Li, Xuechen [1 ]
Shi, Chaojie [1 ]
Zhang, Rui [1 ]
Yang, Zhengchun [1 ]
He, Jie [1 ]
Pan, Peng [1 ]
Li, Huayi [1 ]
Zheng, Lingcheng [2 ]
Feng, Deqiang [3 ]
Cheng, Yahui [4 ]
Liu, Hui [4 ]
机构
[1] Tianjin Univ Technol, Adv Mat & Printed Elect Ctr, Sch Integrated Circuit Sci & Engn, Tianjin Key Lab Film Elect & Commun Devices, Tianjin 300384, Peoples R China
[2] Anhui Univ Sci & Technol, Sch Mech & Photoelect Phys, Huainan 232001, Peoples R China
[3] China Acad Space Technol, Sch Qian Xuesen Lab Space Technol, Beijing 100094, Peoples R China
[4] Nankai Univ, Dept Elect, Tianjin 300350, Peoples R China
基金
中国国家自然科学基金;
关键词
Photocatalytic fuel cells; TiO2; nanorods; Electricity generation; Portable electronics; REFRACTORY ORGANIC-COMPOUNDS; DUAL PHOTOELECTRODE; ENVIRONMENTAL APPLICATIONS; CHARGE-TRANSFER; ENERGY; DEGRADATION; REDUCTION; SYSTEM; PFC; CO2;
D O I
10.1016/j.ceramint.2023.05.201
中图分类号
TQ174 [陶瓷工业]; TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
A portable photocatalytic fuel cell (P-PFC) has been proposed in the present study, which has a simple structure and high performance. The photoanode of the P-PFC was composed of F-doped tin oxide (FTO)/TiO2 seed layer/ TiO2 nanorods, and this nanostructure could expand the absorption range of the solar light. The cathode was a silver paste that was printed on a waterproof and breathable layer. It could effectively absorb oxygen from the air and avoid adding additional oxygen supply equipment. Two electrodes were encapsulated in a hot-melt film to form a small package with a quick-release port. This packaging model enabled a fuel replacement, and this P-PFC was universal to all types of fuels. When 1 mol/L methanol was used as fuel, the photocurrent could reach 2.8 mA/cm2 under a UV light of 30 mW/cm2, and the power density was 0.49 mW/cm2. When the power density of the simulated solar light was as low as 2 mW/cm2, the system could still work normally. The degradation performance of the P-PFC was also evaluated, and its maximum degradation efficiency for methylene blue (MB) reached 74.3%. The results indicated that the P-PFC had great potential in simultaneously degrading organic pollutants and generating electricity.
引用
收藏
页码:26665 / 26674
页数:10
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