The photovoltaic-alkaline water (PV-AW) electrolysis system offers an appealing approach for large-scale green hydrogen generation. However, current PV-AW systems suffer from low solar-to-hydrogen (STH) conversion efficiencies (e.g., <20%) at practical current densities (e.g., >100 mA cm(-2)), rendering the produced H(2) not economical. Here, we designed and developed a highly efficient PV-AW system that mainly consists of a customized, state-of-the-art AW electrolyzer and concentrator photovoltaic (CPV) receiver. The highly efficient anodic oxygen evolving catalyst, consisting of an iron oxide/nickel (oxy)hydroxide (Fe(2)O(3)-NiO(x)H(y)) composite, enables the customized AW electrolyzer with unprecedented catalytic performance (e.g., 1 A cm(-2) at 1.8 V and 0.37 kgH(2)/m(-2) hour(-1) at 48 kWh/kgH(2)). Benefiting from the superior water electrolysis performance, the integrated CPV-AW electrolyzer system reaches a very high STH efficiency of up to 29.1% (refer to 30.3% if the lead resistance losses are excluded) at large current densities, surpassing all previously reported PV-electrolysis systems.
A photovoltaic-electrolysis system with high solar-to-hydrogen efficiency under practical current densities.
阅读:7
作者:Zhang Qingran, Shan Yihao, Pan Jian, Kumar Priyank, Keevers Mark J, Lasich John, Kour Gurpreet, Daiyan Rahman, Perez-Wurf Ivan, Thomsen Lars, Cheong Soshan, Jiang Junjie, Wu Kuang-Hsu, Chiang Chao-Lung, Grayson Kristian, Green Martin A, Amal Rose, Lu Xunyu
| 期刊: | Science Advances | 影响因子: | 12.500 |
| 时间: | 2025 | 起止号: | 2025 Feb 28; 11(9):eads0836 |
| doi: | 10.1126/sciadv.ads0836 | ||
特别声明
1、本页面内容包含部分的内容是基于公开信息的合理引用;引用内容仅为补充信息,不代表本站立场。
2、若认为本页面引用内容涉及侵权,请及时与本站联系,我们将第一时间处理。
3、其他媒体/个人如需使用本页面原创内容,需注明“来源:[生知库]”并获得授权;使用引用内容的,需自行联系原作者获得许可。
4、投稿及合作请联系:info@biocloudy.com。
