光电流
材料科学
可逆氢电极
化学工程
分解水
催化作用
能量转换效率
制氢
半导体
光电化学电池
异质结
纳米技术
电极
光催化
光电子学
电化学
工作电极
电解质
化学
工程类
物理化学
生物化学
作者
Sol A Lee,Jin Wook Yang,Tae Hyung Lee,Ik Jae Park,Changyeon Kim,Sung Hyun Hong,Hyungsoo Lee,Sungkyun Choi,Jooho Moon,Soo Young Kim,Jin Young Kim,Ho Won Jang
标识
DOI:10.1016/j.apcatb.2022.121765
摘要
Exploiting inexhaustible free energy from the sun to produce clean and sustainable fuels is an attractive route toward the heavily polluted earth and energy shortage. Photoelectrochemical cell is strategic energy device because the generated fuels can be stored and used on-demand. Herein, we present the fabrication of Si photoelectrodes with efficient charge separation and transfer using metal-insulator-semiconductor heterostructures for energy-rich fuel production via photoelectrochemical water and urea oxidation. With controls of the native SiOx insulator layer and catalytic NiFe metal layer, Si photoelectrode exhibits a photovoltage of 530 mV and a photocurrent density of 33.3 mA cm−2 at 1.23 V versus reversible hydrogen electrode. Further employed Ni(OH)2 catalysts allow Si photoanode to achieve fill factor of 25.73% and solar-to-hydrogen conversion efficiency of 10.8% with a perovskite/Si tandem solar cell. The fabricated Ni(OH)2/NiFe/n-Si photoanode shows considerable performances toward urea oxidation. Our work presents new insights into sunlight-assisted hydrogen production using wastewater.
科研通智能强力驱动
Strongly Powered by AbleSci AI