光催化
降级(电信)
材料科学
光电流
污染物
发电
化学工程
多孔性
微生物燃料电池
可见光谱
环境科学
化学
光电子学
催化作用
复合材料
功率(物理)
计算机科学
有机化学
电信
量子力学
物理
工程类
作者
Donglai Pan,Shuning Xiao,Xiaofeng Chen,Ruping Li,Yingnan Cao,Dieqing Zhang,Sisi Pu,Zhangcheng Li,Guisheng Li,Hexing Li
标识
DOI:10.1021/acs.est.8b05685
摘要
Photocatalytic fuel cells (PFCs) have proven to be effective for generating electricity and degrading pollutants with a goal to resolve environmental and energy problems. However, the degradation of persistent organic pollutants (POPs), such as perfluorooctanoic acid (PFOA), remains challenging. In the present work, a porous coral-like WO3/W (PCW) photoelectrode with a well-designed energy band structure was used for the photoelectrocatalytic degradation of POPs and the simultaneous generation of electricity. The as-constructed bionic porous coral-like nanostructure greatly improved the light-harvesting capacity of the PCW photoelectrode. A maximum photocurrent density (0.31 mA/cm2) under visible light (λ > 420 nm) irradiation and a high incident photon conversion efficiency (IPCE) value (5.72% at 420 nm) were achieved. Because of the unique porous coral-like structure, the suitable energy band position, and the strong oxidation ability, this PCW photoelectrode-based PFC system exhibited a strong ability for simultaneous photoelectrocatalytic degradation of PFOA and electricity generation under visible-light irradiation, with a power output of 0.0013 mV/cm2 using PFOA as the fuel. This work provides a promising way to construct a reliable PFC using highly toxic POPs to generate electricity.
科研通智能强力驱动
Strongly Powered by AbleSci AI