Recent Progress in Photocathode Interface Engineering for Photoelectrochemical CO2 Reduction Reaction to C1 or C2+ Products

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초록

Photoelectrochemical (PEC) systems harness light absorption to initiate chemical reactions, while electrochemical reactions facilitate the conversion of reactants into desired products, ensuring more efficient and sustainable energy conversion in PECs. Central to optimizing the performance of PECs was the pivotal role played by interface engineering. This intricate process involves manipulating material interfaces at the atomic or nanoscale to enhance charge transfer, improve catalytic activity, and address limitations associated with bulk materials. The careful tuning of factors such as band gap, surface energy, crystallinity, defect characteristics, and structural attributes through interface engineering led to superior catalytic efficiency. Specifically, interface engineering significantly enhanced the efficiency of semiconductor-based PECs. Engineers strategically designed heterojunctions and manipulated catalyst surface properties to optimize the separation and migration of photogenerated charge carriers, minimizing recombination losses and improving performance overall. This review categorizes the discussion into four sections focusing on the interface engineering of PECs, providing valuable insights into recent research trends. Overall, the synergy between PECs and interface engineering holds tremendous promise for advancing renewable energy technologies and addressing environmental challenges by offering innovative solutions for sustainable energy conversion and storage.

키워드

cocatalysts engineeringdefect engineeringinterface engineeringjunction engineeringnanostructure engineeringphotoelectrochemical CO2 reductionCONVERTING CO2CARBON-DIOXIDESOLARTIO2EFFICIENTHETEROJUNCTIONCONVERSIONDEFECTSANATASESYSTEM
제목
Recent Progress in Photocathode Interface Engineering for Photoelectrochemical CO2 Reduction Reaction to C1 or C2+ Products
저자
Kim, Jae HakHong, Sung HyunAhn, Sang HyunKim, Soo Young
DOI
10.1002/EXP.20240014
발행일
2025-04
유형
Review; Early Access
저널명
EXPLORATION
5
2

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