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Yiyang Lin
Researcher at Central South University
Publications - 11
Citations - 988
Yiyang Lin is an academic researcher from Central South University. The author has contributed to research in topics: Catalysis & Adsorption. The author has an hindex of 7, co-authored 11 publications receiving 184 citations.
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Journal ArticleDOI
Iron phthalocyanine with coordination induced electronic localization to boost oxygen reduction reaction
Kejun Chen,Kang Liu,Pengda An,Huangjingwei Li,Yiyang Lin,Junhua Hu,Chuankun Jia,Junwei Fu,Hongmei Li,Hui Liu,Zhang Lin,Wenzhang Li,Jiahang Li,Ying-Rui Lu,Ting-Shan Chan,Ning Zhang,Min Liu +16 more
TL;DR: An axial Fe–O coordination induced electronic localization strategy to enhance oxygen reduction reaction performance and offer a new strategy to regulate catalytic sites for better performance.
Journal ArticleDOI
Modulating electronic structure of metal-organic frameworks by introducing atomically dispersed Ru for efficient hydrogen evolution.
Yamei Sun,Ziqian Xue,Qinglin Liu,Yaling Jia,Yinle Li,Kang Liu,Yiyang Lin,Min Liu,Guangqin Li,Cheng-Yong Su +9 more
TL;DR: In this article, a single-atom strategy was used to construct excellent metal-organic frameworks (MOFs) hydrogen evolution reaction electrocatalyst (NiRu0.13-BDC) by introducing atomically dispersed Ru.
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Chemical Identification of Catalytically Active Sites on Oxygen-doped Carbon Nanosheet to Decipher the High Activity for Electro-synthesis Hydrogen Peroxide
Shanyong Chen,Tao Luo,Kejun Chen,Yiyang Lin,Junwei Fu,Kang Liu,Chao Cai,Qiyou Wang,Huangjingwei Li,Xiaoqing Li,Junhua Hu,Hongmei Li,Mingshan Zhu,Min Liu +13 more
TL;DR: In this paper, the authors proposed a chemical titration strategy to decipher the oxygen-doped carbon nanosheet (OCNS900 ) catalyst for 2'e- ORR.
Journal ArticleDOI
Tuning Charge Distribution of FeN4 via External N for Enhanced Oxygen Reduction Reaction
Yiyang Lin,Kang Liu,Kejun Chen,Yan Xu,Hongmei Li,Junhua Hu,Ying-Rui Lu,Ting-Shan Chan,Xiaoqing Qiu,Junwei Fu,Min Liu +10 more
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Paired Ru‒O‒Mo ensemble for efficient and stable alkaline hydrogen evolution reaction
Huang Jing Wei Li,Huang Jing Wei Li,Kang Liu,Junwei Fu,Kejun Chen,Kexin Yang,Yiyang Lin,Baopeng Yang,Qiyou Wang,Hao Pan,Zhoujun Cai,Hongmei Li,Maoqi Cao,Junhua Hu,Ying-Rui Lu,Ting-Shan Chan,Emiliano Cortés,Andrea Fratalocchi,Min Liu +18 more
TL;DR: In this article, the authors demonstrate that the H2O adsorption improves significantly by the construction of Ru-O-Mo sites, and propose Ru/MoO2 catalysts with Ru−O−Mo sites through a facile thermal treatment process and assessed the creation of Ru•O•Mo interfaces by transmission electron microscope and extended X-ray absorption fine structure (EXAFS).