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- W4313857537 abstract "Electron-hole separation is a main challenge that limits the energy efficiency of photoelectrochemical water splitting for hydrogen fuel production. Surface polaron states with an energy level distribution near the conduction band are highly efficient charge separation passageways to massively accept or transfer the photogenerated electrons. Here, we found that the charge separation via surface polaron states could be further enhanced by heating (<100 °C) to accelerate the electron mobility of surface polaron states. As a result of heating from 30 to 70 °C, the saturated photocurrent increased about 34.5% under 1 sun and 18.3% under 10 suns from heat-induced increase in electron flux of surface polaron states. The heat-sensitive surface-state electron transfer provides a new heat-photoelectricity coupling mechanism to guide the design of new photoanodes that are available for complementary multienergy systems with high energy efficiency." @default.
- W4313857537 created "2023-01-10" @default.
- W4313857537 creator A5013461643 @default.
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- W4313857537 date "2023-01-09" @default.
- W4313857537 modified "2023-10-18" @default.
- W4313857537 title "Thermally Accelerated Surface Polaron Hopping in Photoelectrochemical Water Splitting" @default.
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- W4313857537 doi "https://doi.org/10.1021/acs.jpclett.2c03567" @default.
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