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◆ ACS Energy Letters2026-04-07· Current (fluid)

Chemical Origin and Transport Limits of Current Multiplication in BiVO <sub>4</sub> Photoanodes for Glycerol Oxidation

Jie Ouyang, Huijuan Hu, Na Deng, Yujie Ren, Yixin Zhang, Yugui Tang, Chunyi Fu, Yunsheng Li, Qun Wang, Mingming Yin, Zhiyong Peng, Wenjuan Wu, Huwei Tan, Fengxuan Zhang, Sheng Shen, Shuang-Feng Yin

原始摘要(英文原文)· Original abstract
Current multiplication, where more than one electron transfer per photon is absorbed, has the potential to transform photoelectrochemical solar fuel generation. Yet it remains rarely realized, largely because the underlying chemical pathways enabling this process are poorly understood and key bottlenecks are still unidentified. Here on the BiVO 4 photoanode, we reveal direct evidence of vanadium-mediated current-multiplication pathway. During glycerol oxidation, reactive intermediates spontaneously inject electrons directly into the BiVO 4 conduction band through surface V 5+ reduction, thereby enabling single-photon-driven multiple-electron transfer. More importantly, we identify poor electron transport─independent of classical hole–electron separation─as a critical bottleneck limiting current multiplication. Mo doping significantly enhances electron transport and promotes efficient extraction of the injected electrons, thereby unlocking the current-multiplication potential of BiVO 4 .
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Chemical Origin and Transport Limits of Current Multiplication in BiVO <sub>4</sub> Photoanodes for Glycerol Oxidation — 科研速览 Science Skim