博士生导师
硕士生导师
入职时间:2022-03-25
所在单位:粉末冶金研究院
学历:研究生(博士)毕业
性别:男
学位:博士学位
在职信息:在职
毕业院校:中国科学院金属研究所
学科:材料科学与工程
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[21]Electrochemically Tunable Proton-Coupled Electron Transfer in Pd-Catalyzed Benzaldehyde Hydrogenation[J].Angewandte Chemie International Edition, 2019, 132: 1517–1521.
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[22]Shear deformation determined by short-range configuration of atoms in topologically close-packed crystal[J].Acta Materialia, 2019, 179: 396-405.
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[23]Hydration-Driven Superlattices: Interplay between Short- and Long-Ranged Forces Leading to the Formation of Ag Nanoparticle Superlattice[J].Small, 2019, 15: 1970175.
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[24]Edge Dislocations Induce Improved Photocatalytic Efficiency of Colored TiO 2[J].Advanced Materials Interfaces, 2019, 6: 1901121.
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[25]Electrocatalytic Hydrogen Evolution in Neutral pH Solutions: Dual-Phase Synergy[J].ACS Catalysis, 2019, 9: 8712–8718.
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[26]In situ characterization of kinetics and mass transport of PbSe nanowire growth via LS and VLS mechanisms[J].Nanoscale, 2019, 11: 874-5878.
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[27]Strain Relaxation-Induced Twin Interface Migration and Morphology Evolution of Silver Nanoparticles[J].Chemistry of Materials, 2019, 31: 842-850.
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[28]Enhanced photocatalytic hydrogen evolution by partially replaced corner-site C atom with P in g-C3N4[J].Applied Catalysis B: Environmental, 2018, 244: 486-493.
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[29]TiO2-x/CoOx photocatalyst sparkles in photothermocatalytic reduction of CO2 with H2O steam[J].Applied Catalysis B: Environmental, 2018
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[30]Mechanistic Understanding of the Growth Kinetics and Dynamics of Nanoparticle Superlattices by Coupling Interparticle Forces from Real-Time Measurements[J].ACS Nano, 2018, 12: 12778–12787.
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[31]Silver nanocube and nanobar growth via anisotropic monomer addition and particle attachment processes[J].Langmuir, 2017, 34: 1466–1472.
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[32]Investigating the magnitude and source of orientation-dependent interactions between TiO2 crystal surfaces[J].Nanoscale, 2017, 9: 10173-10177.
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[33]Direct measurement of precipitate induced strain in an Al-Zn-Mg-Cu alloy with aberration corrected transmission electron microscopy[J].Micron, 2016, 90: 18-22.
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[34]Transformation induced crack deflection in a metastable titanium alloy and implications on transformation toughening[J].Acta Materialia, 2016, 118: 120-128.
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[35]Geometric and Chemical Composition Effects on Healing Kinetics of Voids in Mg-bearing Al Alloys[J], 2016, 47: 2410–2420.
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[36]Deformation-induced dissolution and growth of precipitates in an Al–Mg–Er alloy during high-cycle fatigue[J].Acta Materialia, 2014, 81: 409-419.
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[37]In situ electron microscopy investigation of void healing in an Al-Mg-Er alloy at a low temperature[J].Acta Materialia, 2014, 69: 236-245.