Tandem photo-electrode of InGaN with two Si p-n junctions for CO2 conversion to HCOOH with the efficiency greater than biological photosynthesis
Tandem photo-electrode of InGaN with two Si p-n junctions for CO2 conversion to HCOOH with the efficiency greater than biological photosynthesis
复制标题
DOI:
10.1063/1.4910510
复制
发表时间:
2015-02
影响因子:
4
通讯作者:
T. Sekimoto;Shuichi Shinagawa;Yusuke Uetake;K. Noda;M. Deguchi;S. Yotsuhashi;K. Ohkawa
中科院分区:
文献类型:
--
作者:
T. Sekimoto;Shuichi Shinagawa;Yusuke Uetake;K. Noda;M. Deguchi;S. Yotsuhashi;K. Ohkawa
We report on a highly improved CO2 to HCOOH conversion system using a tandem photo-electrode (TPE) of InGaN and two Si p-n junctions. To improve its efficiency, narrow-band-gap InGaN was applied as the photo-absorption layer. In the TPE structure, the current matching between GaN-based photo-absorption layer and two Si p-n junctions is crucial for the improvement of the efficiency. The energy conversion efficiency for HCOOH production reached 0.97%, which is greater than average of global biological photosynthetic one.