中文 / English

2024

175. Liu, J.; Wang, T.; Sun, M.; Liao, M.; Wang, S.; Liu, S.; Shi, H.; Liu, Y.; Shen, Y.; Cao, R.; Huang, Y.; Huang, B.*; Li, Q.*, Triggering the Dual-Metal-Site Lattice Oxygen Mechanism with In Situ-Generated Mn3+ Sites for Enhanced Acidic Oxygen Evolution. J. Am. Chem. Soc. 2024. DOI: 10.1021/jacs.4c14338
174. Qin, Z.; Li, J,; Wu, Q.; Sathishkumar, N.; Liu, X.; Lai, J.; Mao, J.; Xie, L.; Li, S.; Lu, G.; Cao, R.; Yan, P.; Huang, Y.; Li, Q.*, Topologically Close-Packed Frank-Kasper C15 Phase Intermetallic Ir Alloy Electrocatalysts Enables High-Performance Proton Exchange Membrane Water Electrolyzer. Adv. Mater. 2024, DOI: 10.1002/adma.202412541.
173. Xie, L.; Wang, J.; Wang, K.; He, Z.; Liang, J.; Lin, Z.; Wang, T.; Cao, R.; Yang, F.; Cai, Z.*; Huang, Y.; Li, Q.*, Modulating the Bader Charge Transfer in Single p‐Block Atoms Doped Pd Metallene for Enhanced Oxygen Reduction Electrocatalysis. Angew. Chem. Int. Ed. 2024, 63, 202407658.
172. Li, S.; Wang, G.; Lv, H.; Lin, Z.; Liang, J.; Liu, X.; Wang, Y.-G.*; Huang, Y.; Wang, G.*; Li, Q.*, Constructing Gradient Orbital Coupling to Induce Reactive Metal–Support Interaction in Pt-Carbide Electrocatalysts for Efficient Methanol Oxidation. J. Am. Chem. Soc. 2024, 146, 17659-17668.
171. Liang, J.; Li, S.; Liu, X.; Wan, Y.; Xia, Y.; Shi, H.; Zhang, S.; Wang, H.-L.; Lu, G.; Wu, G.; Huang, Y.; Li, Q.*, Gas-Balancing Adsorption Strategy Towards Noble-Metal-Based Nanowire Electrocatalysts. Nat. Catal. 2024, 7, 719-732.
170. Liang, J.; Wan, Y.; Lv, H.; Liu, X.; Lv, F.; Li, S.; Xu, J.; Deng, Z.; Liu, J.; Zhang, S.; Sun, Y.; Luo, M.; Lu, G.; Han, J.; Wang, G.; Huang, Y.; Guo, S.*; Li, Q.*, Metal Bond Strength Regulation Enables Large-Scale Synthesis of Intermetallic Nanocrystals for Practical Fuel Cells. Nat. Mater. 2024, 23, 1259–1267.
169. Lin, Z.; Sathishkumar, N.; Xia, Y.; Li, S.; Liu, X.; Mao, J.; Shi, H.; Lu, G.; Wang, T.; Wang, H. L.; Huang, Y.; Elbaz, L.; Li, Q.*, Tailoring Zirconia Supported Intermetallic Platinum Alloy via Reactive Metal‐Support Interactions for High‐Performing Fuel Cells. Angew. Chem. Int. Ed. 2024, 63, e202400751.
168. Liu, X.; Wu, G.; Li, Q.* Orbital Modulation in Platinum-Group-Metal (PGM) Electrocatalysts: An Effective Approach to Boost Catalytic Performance. eScience. 2024, 100270.
167. Liu, J.; Wang, T.*; Lin, Z.; Liao, M.; Liu, S.; Wang, S.; Cai, Z.; Sun, H.; Shen, Y.; Huang, Y.; Li, Q.*, Single-atom Co Dispersed on Polyoxometalate Derivatives Confined in Bamboo-Like Carbon Nanotubes Enabling Efficient Dual-Site Lattice Oxygen Mediated Oxygen Evolution Electrocatalysis for Acidic Water Electrolyzers. Energy Environ. Sci. 2024, 17, 3088-3098.
166. Liu, X.; Wang, Y.; Liang, J.; Li, S.; Zhang, S.; Su, D.; Cai, Z.; Huang, Y.; Elbaz, L.; Li, Q.*, Introducing Electron Buffers into Intermetallic Pt Alloys against Surface Polarization for High-Performing Fuel Cells. J. Am. Chem. Soc. 2024, 146, 2033-2042.
165. Li, Y.; Wang, T.*; Yao, Z.; Chen, Q. a.; Li, Q.*, Enhancing the Performance of Platinum Group Metal-Based Electrocatalysts through Nonmetallic Element Doping. Chinese J. Catal. 2024, 56, 51-73.
164.Qin, Z.; Wang, T.; Yao, Z.; Li, Q.*, Unconventional Intermetallic Noble Metal Nanocrystals for Energy-Conversion Electrocatalysis. EES. Catal. 2024, 2, 545-555.