Fast Generation of Hydroxyl Radicals by Rerouting the Electron Transfer Pathway via Constructed Chemical Channels during the Photo-Electro-Reduction of Oxygen

被引:43
作者
Zhang, Jinxing [1 ]
Zhou, Zhaoyu [1 ]
Feng, Zhiyuan [1 ]
Zhao, Hongying [1 ]
Zhao, Guohua [1 ]
机构
[1] Tongji Univ, Shanghai Key Lab Chem Assessment & Sustainabil, Sch Chem Sci & Engn, Shanghai 200092, Peoples R China
关键词
hydroxyl radical; oxygen reduction reaction; electron transfer; single atom catalysis; photoelectrocatalytic process; SINGLE-ATOM CATALYST; HYDROGEN-PEROXIDE; HIGH-EFFICIENCY; H2O2; DEGRADATION; REMOVAL; TIO2; PEROXYMONOSULFATE; ACTIVATION; OXIDATION;
D O I
10.1021/acs.est.1c06368
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
A strategy for the fast generation of hydroxyl radicals (HO center dot) via photo-electroreduction of oxygen by rerouting the electron transfer pathway was proposed. The rate-determining step of HO center dot production is the formation of H2O2 and the simultaneous reduction of H2O2. Engineering of F-TiO2 with single atom Pd bonded with four F and two O atoms favored the electrocatalytic 2-electron oxygen reduction to H2O2 with as high as 99% selectivity, while the additional channel bond HO-O center dot center dot center dot Pd-F-TiO2 facilitates the photogenerated electron transfer from the conduction band to single atom Pd to reduce Pd center dot center dot center dot O-OH to HO center dot. The optimized HO center dot production rate is 9.18 mu mol L-1 min(-1), which is 2.6-52.5 times higher than that in traditional advanced oxidation processes. In the application of wastewater treatment, this proposed photoelectrocatalytic oxygen reduction method, respectively, shows fast kinetics of 0.324 and 0.175 min(-1) for removing bisphenol A and acetaminophen. Around 93.2% total organic carbon and 99.3% acute toxicity removal were achieved. Additionally, the degradation efficiency was less affected by the water source and pH value because of the evitable usage of metallic active sites. This work represents a fundamental investigation on the generation rate of HO center dot, which would pave the way for the future development of photoelectrocatalytic technologies for water purification.
引用
收藏
页码:1331 / 1340
页数:10
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