期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
Unassisted overall water splitting with a solar-to-hydrogen efficiency of over 10% by coupled lead halide perovskite photoelectrodes 被引量:1
1
作者 Ryan Rhee Tae G.Kim +6 位作者 Gyu Y.Jang Gwangmin Bae Jung H.lee sunje lee Sungsoon Kim Seokwoo Jeon Jong H.Park 《Carbon Energy》 SCIE CAS CSCD 2023年第1期134-143,共10页
Hydrogen is a promising future sustainable fuel candidate with boundless opportunities.Research into photoelectrochemical(PEC)water splitting based on a lead halide perovskite(LHP)has progressed significantly with the... Hydrogen is a promising future sustainable fuel candidate with boundless opportunities.Research into photoelectrochemical(PEC)water splitting based on a lead halide perovskite(LHP)has progressed significantly with the aim of more efficient solar hydrogen production.Herein,we unite a well-known photo-absorbing LHP with cost-effective water-splitting catalysts,and we introduce two types of monolithic LHP-based PEC devices that act as a photocathode and a photoanode for the hydrogen evolution reaction and oxygen evolution reaction,leading to efficient unbiased overall water splitting.Through the integration of these two monolithic LHP-based photoelectrodes,an unbiased solar-to-hydrogen conversion efficiency of 10.64%and a photocurrent density of 8.65 mA cm^(−2) are achieved. 展开更多
关键词 PEROVSKITE photoelectrochemical cell PHOTOELECTRODE unassisted
下载PDF
Solar-harvesting lead halide perovskite for artificial photosynthesis
2
作者 sunje lee Gyu Yong Jang +1 位作者 Jung Kyu Kim Jong Hyeok Park 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2021年第11期11-26,I0001,共17页
Facing the upcoming energy and environmental crisis, artificial photosynthesis for producing various solar fuels (e.g., hydrogen or carbon products) via a solar-to-chemical energy conversion is receiving increasing at... Facing the upcoming energy and environmental crisis, artificial photosynthesis for producing various solar fuels (e.g., hydrogen or carbon products) via a solar-to-chemical energy conversion is receiving increasing attention;however, its low conversion efficiency is a challenge for commercialization. To resolve low-efficiency issues, lead halide perovskite (LHP) with outstanding optoelectronic properties compared to conventional semiconductors can be a promising approach to improve the solar-to-fuel conversion reactions and solar fuel production efficiency. The tunable energy band structure and charge transport properties of LHP have promoted their extensive use in the production of solar fuels. This study summarizes the recent advancements of LHP-mediated solar-to-fuel conversions, classified by their redox reactions, namely solar water splitting, hydrohalic acid splitting, and CO_(2) reduction. Advanced approaches for achieving high conversion efficiency and long-term durability are discussed, including the configuration of devices, the composition of LHP, and the protection strategy of LHP. Moreover, the reaction mechanisms of LHP-mediated solar-to-chemical energy conversions and obstacles for enhancing the conversion efficiency are discussed. Finally, we present the perspectives on the development of LHP-incorporated solar-to-fuel conversion systems, which might open a new era of energy harvesting and storage. 展开更多
关键词 PEROVSKITE Photocatalytic reaction PHOTOELECTROCHEMISTRY PHOTOVOLTAIC Water splitting HI splitting CO_(2)reduction
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部