Gaoxin Lin
Chinese Academy of Sciences
16 Papers
28 Citations
Gaoxin Lin is an academic researcher from Chinese Academy of Sciences. The author has contributed to research in topics: Catalysis & Electrocatalyst. The author has an hindex of 7, co-authored 13 publications. Previous affiliations of Gaoxin Lin include Zhejiang Sci-Tech University.
Chat about Author
Papers
A review of oxygen reduction mechanisms for metal-free carbon-based electrocatalysts
Ruguang Ma,Gaoxin Lin,Yao Zhou,Qian Liu,Tao Zhang,Guangcun Shan,Minghui Yang,Jiacheng Wang +7 more
- 19 Jul 2019
TL;DR: In this paper, the authors summarized the up-to-date progress in the studies of carbon materials, and emphasized on the combination of experiment and theory to clarify the underlying mechanisms of these materials.
KOH activation of biomass-derived nitrogen-doped carbons for supercapacitor and electrocatalytic oxygen reduction
TL;DR: In this article, the influence of KOH dosage on the morphology, structure and electrochemical performance (supercapacitor and oxygen reduction reaction (ORR)) was studied in detail, and the optimized ANPC-3, synthesized under the KOH/carbon mass ratio of 3/1, possesses high specific surface area of 1749m 2 ǫg −1, developed hierarchical micro-mesoporous structures as well as moderate nitrogen content (1.37
394
Intrinsic Electron Localization of Metastable MoS2 Boosts Electrocatalytic Nitrogen Reduction to Ammonia.
Gaoxin Lin,Qiangjian Ju,Xiaowei Guo,Wei Zhao,Samira Adimi,Jinyu Ye,Qingyuan Bi,Jiacheng Wang,Minghui Yang,Fuqiang Huang,Fuqiang Huang +10 more
TL;DR: In this paper, the metastable polymorphs of MoS2 bulk (zigzag chain in 1T' phase and diamond chain in the 1T''' phase) were discovered to significantly increase intrinsic electron localization around the metal chains, which can enhance the charge transfer from the adsorbed nitrogen molecule to the metal chain, allowing for boosted NRR kinetics.
127
Edge-sited Fe-N4 atomic species improve oxygen reduction activity via boosting O2 dissociation
Ruguang Ma,Gaoxin Lin,Qiangjian Ju,Wei Tang,Gen Chen,Zhenhua Chen,Qian Liu,Minghui Yang,Yunfeng Lu,Jiacheng Wang +9 more
TL;DR: In this paper, a carbon material with edge-sited Fe-N4 atomic species (E-FeNC) was synthesized from pyrolysis of abundant Fe-containing biomass using silica spheres as hard template.
84
Highly Efficient Biomass Upgrading By A Ni-Cu Electrocatalyst Featuring Passivation of Water Oxidation Activity.
Dexin Chen,Yunxuan Ding,Xing Cao,Linqin Wang,Husileng Lee,Gaoxin Lin,Wenlong Li,Guoheng Ding,Licheng Sun +8 more
- 24 Jul 2023
TL;DR: Researchers develop a Ni-Cu electrocatalyst that passivates oxygen evolution reaction, enabling efficient biomass upgrading with 100% Faradaic efficiency and yield at high current densities, offering a new approach to biomass upgrading.
68