Identifying the electrocatalytic active sites of a Ru-based catalyst with high Faraday efficiency in CO <sub>2</sub> -saturated media for an aqueous Zn–CO <sub>2</sub> system
Jeongwon Kim(Ulsan National Institute of Science and Technology), Guntae Kim(Incheon National University), Jeong Woo Han(Seoul National University), Arim Seong(Government of the Republic of Korea), Changmin Kim(Ulsan National Institute of Science and Technology), Javeed Mahmood(Nanomaterials Research (United States)), Linjuan Zhang(Ocean University of China), Hyuk‐Jun Noh(Community Frameworks), Jian‐Qiang Wang(Chinese Academy of Sciences), Jing Zhou(Ministry of Education of the People's Republic of China), Ara Cho(Pohang University of Science and Technology), Jong‐Beom Baek(Community Frameworks), Yejin Yang(Ulsan National Institute of Science and Technology), Sangwook Joo(Pohang Iron and Steel (South Korea))
Cited by 22
Related Papers
An efficient and pH-universal ruthenium-based catalyst for the hydrogen evolution reaction
|Nature Nanotechnology|2017|1.7k
Nitrogenated holey two-dimensional structures
|Nature Communications|2015|1.2k
Ordered Mesoporous Black TiO<sub>2</sub> as Highly Efficient Hydrogen Evolution Photocatalyst
|Journal of the American Chemical Society|2014|971
Edge-carboxylated graphene nanosheets via ball milling
|Proceedings of the National Academy of Sciences|2012|681
Ruthenium anchored on carbon nanotube electrocatalyst for hydrogen production with enhanced Faradaic efficiency
|Nature Communications|2020|542