Ampere‐Level Current Density CO<sub>2</sub> Reduction with High C<sub>2+</sub> Selectivity on La(OH)<sub>3</sub>‐Modified Cu Catalysts
Shuqi Hu(Tsinghua–Berkeley Shenzhen Institute), Bilu Liu(University Town of Shenzhen), Jingwei Wang(Tsinghua–Berkeley Shenzhen Institute), Xin Kang(Tsinghua–Berkeley Shenzhen Institute), Qiangmin Yu(Tsinghua–Berkeley Shenzhen Institute), Xiaolong Zou(Tsinghua–Berkeley Shenzhen Institute), Wei Lv(Wenzhou Medical University), Shaohai Li(Changchun University of Technology), Zhiyuan Zhang(Tsinghua–Berkeley Shenzhen Institute), Heming Liu(Tsinghua–Berkeley Shenzhen Institute), Jiarong Liu(Tsinghua–Berkeley Shenzhen Institute), Zhiyuan Zeng(City University of Hong Kong), Yumo Chen(Tsinghua–Berkeley Shenzhen Institute), Shiyu Ge(Tsinghua–Berkeley Shenzhen Institute)
Cited by 47
Related Papers
Towards ultrahigh volumetric capacitance: graphene derived highly dense but porous carbons for supercapacitors
|Scientific Reports|2013|625
Achieving superb sodium storage performance on carbon anodes through an ether-derived solid electrolyte interphase
|Energy & Environmental Science|2016|502
A corrosion-resistant RuMoNi catalyst for efficient and long-lasting seawater oxidation and anion exchange membrane electrolyzer
|Nature Communications|2023|483
Electrochemically Reduced Single‐Layer MoS<sub>2</sub> Nanosheets: Characterization, Properties, and Sensing Applications
|Small|2012|404
Vertically Aligned Carbon Nanotubes Grown on Graphene Paper as Electrodes in Lithium‐Ion Batteries and Dye‐Sensitized Solar Cells
|Advanced Energy Materials|2011|334