2019-02 | A Tannic Acid-Derived N-, P-Codoped Carbon-Supported Iron-Based Nanocomposite as an Advanced Trifunctional Electrocatalyst for the Overall Water Splitting Cells and Zinc-Air Batteries | Qin, Qing; Jang, Haeseong; Li, Ping; Yuan, Bing; Liu, Xien; Cho, Jaephil | ARTICLE | 855 |
2019-09 | Antimony-Based Composites Loaded on Phosphorus-Doped Carbon for Boosting Faradaic Efficiency of the Electrochemical Nitrogen Reduction Reaction | Liu, Xien; Jang, Haeseong; Li, Ping; Wang, Jia; Qin, Qing; Kim, Min Gyu; Li, Guangkai; Cho, Jaephil | ARTICLE | 710 |
2020-01 | Bimetallic metal-organic framework-derived MoFe-PC microspheres for electrocatalytic ammonia synthesis under ambient conditions | Chen, Silong; Jang, Haeseong; Wang, Jia; Qin, Qing; Liu, Xien; Cho, Jaephil | ARTICLE | 737 |
2022-11 | Boosting Hydrogen Evolution Reaction by Phase Engineering and Phosphorus Doping on Ru/P-TiO2 | Zhou, Shizheng; Jang, Haeseong; Qin, Qing; Hou, Liqiang; Kim, Min Gyu; Liu, Shangguo; Liu, Xien; Cho, Jaephil | ARTICLE | 232 |
2019-05 | Coupling a Low Loading of IrP 2 , PtP 2 , or Pd 3 P with Heteroatom-Doped Nanocarbon for Overall Water-Splitting Cells and Zinc-Air Batteries | Qin, Qing; Jang, Haeseong; Chen, LuLu; Li, Ping; Wei, Tao; Liu, Xien; Cho, Jaephil | ARTICLE | 762 |
2019-05 | Cu 97 P 3-x-y O x N y /NPC as a bifunctional electrocatalyst for rechargeable zinc-air battery | Yuan, Bing; Nam, Gyutae; Li, Ping; Wang, Shuai; Jang, Haeseong; Wei, Tao; Qin, Qing; Liu, Xien; Cho, Jaephil | ARTICLE | 768 |
2020-07 | Fe, Al-co-doped NiSe(2)nanoparticles on reduced graphene oxide as an efficient bifunctional electrocatalyst for overall water splitting | Chen, Lulu; Jang, Haeseong; Kim, Min Gyu; Qin, Qing; Liu, Xien; Cho, Jaephil | ARTICLE | 1404 |
2020-01 | FexNiy/CeO2 loaded on N-doped nanocarbon as an advanced bifunctional electrocatalyst for the overall water splitting | Chen, Lulu; Jang, Haeseong; Kim, Min Gyu; Qin, Qing; Liu, Xien; Cho, Jaephil | ARTICLE | 640 |
2021-02 | Gettering La Effect from La3IrO7 as a Highly Efficient Electrocatalyst for Oxygen Evolution Reaction in Acid Media | Qin, Qing; Jang, Haeseong; Wang, Yimeng; Zhang, Lijie; Li, Zijian; Kim, Min Gyu; Liu, Shangguo; Liu, Xien; Cho, Jaephil | ARTICLE | 465 |
2022-02 | IrO2/LiLa2IrO6 as a robust electrocatalyst for the oxygen evolution reaction in acidic media | Liu, HuiHui; Jang, Haeseong; Wang, Yu; Kim, Min Gyu; Li, Haisen; Qin, Qing; Liu, Xien; Cho, Jaephil | ARTICLE | 314 |
2018-10 | Low Loading of RhxP and RuP on N, P Codoped Carbon as Two Trifunctional Electrocatalysts for the Oxygen and Hydrogen Electrode Reactions | Qin, Qing; Jang, Haeseong; Chen, Lulu; Nam, Gyutae; Liu, Xien; Cho, Jaephil | ARTICLE | 621 |
2021-06 | Ru atom-modified Co4N-CoF2 heterojunction catalyst for high-performance alkaline hydrogen evolution | Zhou, Shizheng; Jang, Haeseong; Qin, Qing; Li, Zijian; Kim, Min Gyu; Ji, Xuqiang; Liu, Xien; Cho, Jaephil | ARTICLE | 537 |
2022-12 | Single-Atom Sn on Tensile-Strained ZnO Nanosheets for Highly Efficient Conversion of CO2 into Formate | Zhang, Yingzheng; Jang, Haeseong; Ge, Xin; Zhang, Wei; Li, Zijian; Hou, Liqiang; Zhai, Li; Wei, Xiaoqian; Wang, Zhe; Kim, Min Gyu; Liu, Shangguo; Qin, Qing; Liu, Xien; Cho, Jaephil | ARTICLE | 330 |
2021-02 | The Heterostructure of Ru2P/WO3/NPC Synergistically Promotes H2O Dissociation for Improved Hydrogen Evolution | Jiang, Xiaoli; Jang, Haeseong; Liu, Shangguo; Li, Zijian; Kim, Min Gyu; Li, Chuang; Qin, Qing; Liu, Xien; Cho, Jaephil | ARTICLE | 450 |
2022-03 | The synergistic effect of Hf-O-Ru bonds and oxygen vacancies in Ru/HfO2 for enhanced hydrogen evolution | Li, Guangkai; Jang, Haeseong; Liu, Shangguo; Li, Zijian; Kim, Min Gyu; Qin, Qing; Liu, Xien; Cho, Jaephil | ARTICLE | 388 |
2021-06 | Three-dimensional hierarchical Co(OH)F nanosheet arrays decorated by single-atom Ru for boosting oxygen evolution reaction | Zhou, Shizheng; Jang, Haeseong; Qin, Qing; Li, Zijian; Kim, Min Gyu; Li, Chuang; Liu, Xien; Cho, Jaephil | ARTICLE | 892 |