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Kaige Shi
Kaige Shi
Email verificata su ucf.edu
Titolo
Citata da
Citata da
Anno
Superconductivity in Single-Quintuple-Layer Bi2Te3 Grown on Epitaxial FeTe
H Qin, B Guo, L Wang, M Zhang, B Xu, K Shi, T Pan, L Zhou, J Chen, ...
Nano Letters 20 (5), 3160-3168, 2020
272020
Beyond catalytic materials: Controlling local gas/liquid environment in the catalyst layer for CO2 electrolysis
Z Xing, K Shi, X Hu, X Feng
Journal of Energy Chemistry 66, 45-51, 2022
242022
Elucidating the intrinsic activity and selectivity of Cu for nitrate electroreduction
Z Ren, K Shi, X Feng
ACS Energy Letters 8 (9), 3658-3665, 2023
162023
Interplay of Active Sites and Microenvironment in High-Rate Electrosynthesis of H2O2 on Doped Carbon
Z Xing, K Shi, ZS Parsons, X Feng
ACS Catalysis 13 (5), 2780-2789, 2023
122023
Identification of active sites for ammonia electrosynthesis on ruthenium
L Hu, HS Pillai, C Feit, K Shi, Z Gao, P Banerjee, H Xin, X Feng
ACS Energy Letters 7 (12), 4290-4298, 2022
122022
Evidence for topological superconductivity: Topological edge states in Bi2Te3/FeTe heterostructure
B Guo, KG Shi, HL Qin, L Zhou, WQ Chen, F Ye, JW Mei, HT He, TL Pan, ...
Chinese Physics B 29 (9), 097403, 2020
62020
Sensitivity of gas-evolving electrocatalysis to the catalyst microenvironment
K Shi, ZS Parsons, X Feng
ACS Energy Letters 8 (7), 2919-2926, 2023
52023
Hydrophilic or Hydrophobic? Optimizing the Catalyst Microenvironment for Gas‐Involving Electrocatalysis
K Shi, Z Ren, Z Meng, X Feng
ChemCatChem, e202301308, 2024
2024
Efficient Recycling of Dilute Nitrate to Ammonia Using Cu Nanowire Electrocatalyst
K Shi, MD Willis, Z Ren, X Feng
The Journal of Physical Chemistry C 127 (42), 20710-20717, 2023
2023
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