Rh/InGaN₁₋ₓOₓ Nanowires

Photo-thermal synergy for syngas

By loading Rh nanoparticles on InGaN₁₋ₓOₓ nanowires and utilizing lattice oxygen, the apparent activation energy of dry reforming of methane is lowered from 2.96 eV to 1.70 eV, enabling efficient photo-thermal co-driven syngas production with a chemical loop that suppresses coke formation.

Li, Yixin · Li, Jinglin · Yu, Tianqi · Qiu, Liang · Hasan, Syed Mohammad Najib · Lin, Yao · Hu, Pan · Arafin, Shamsul · Sadaf, Sharif Md · Zhu, Lei · Zhou, Baowen · Jinglin, Li

Science Bulletin 2024

Specifications

合成气产率
{'zh': '180.9', 'en': ''} mmol gcat⁻¹
选择性
{'zh': '96.3', 'en': ''} %
周转数
{'zh': '4182', 'en': ''} mol syngas
表观活化能从
{'zh': '2.96', 'en': ''} eV