教授
性别:男
在职信息:在职
所在单位:材料科学与工程学院
入职时间:2015-05-25
访问量:
最后更新时间:..
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[1]
余维清.
Advanced sodium-ion capacitor based on antimony-carbon composite anode.
Rare Metals,
41,
3360-3369,
2022.
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[2]
黄欣莉.
Revealing the Effect of the Microstructure on Potassium Storage Behavior in a Two-Dimensional Mesoporous Carbon Anode.
ACS nano,
2024.
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[3]
严毅杰.
Versatile polymer-supported argyrodite-type sulfide solid electrolyte membranes for energy-dense lithium batteries.
MATERIALS SCIENCE & ENGINEERING R-REPORTS,
163,
2025.
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[4]
张树贤.
Melt-Infusion-Induced Electrolyte Surface Coating Stabilized Sulfide-Based All-Solid-State Lithium Metal Batteries.
ACS nano,
2025.
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[5]
王朋.
P-block element modulated 1 T phase MoS2 with Ru lattice grafting for high-performance Li | |O2 batteries.
自然通讯,
16,
2025.
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[6]
杜丹妮.
Pre-lithiation carbon anodes mitigating potassium loss for high-performance potassium-ion energy storage devices.
Journal of Materials Chemistry A,
12,
33958-33971,
2024.
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[7]
胡义博.
Carbon-coated Li4Ti5O12 nanoflakes for ultra-fast charging of lithium-ion batteries.
Applied Surface Science,
656,
2024.
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[8]
孙琪琪.
Molecule-Level Multiscale Design of Nonflammable Gel Polymer Electrolyte to Build Stable SEI/CEI for Lithium Metal Battery.
NANO-MICRO LETTERS,
17,
2025.
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[9]
金之栋.
Construction of Pt/Ce-In2O3 hierarchical microspheres for superior triethylamine detection at low temperature.
Colloids and Surfaces A,
659,
2023.
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[10]
金之栋.
Fast responding and recovering of NO2 sensors based on Ni-doped In2O3 nanoparticles.
SENSORS AND ACTUATORS B-CHEMICAL,
377,
2023.
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[11]
.
The synergy mechanism of CsSnI3 and LiTFSI enhancing the electrochemical performance of PEO-based solid-state batteries.
CARBON NEUTRALIZATION,
2024.
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[12]
赵瑞正.
Encapsulating Ultrafine Sb Nanoparticles in Na+ Pre-Intercalated 3D Porous Ti3C2TX MXene Nanostructures for Enhanced Potassium Storage Performance.
ACS nano,
14,
13938,
2020.
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[13]
刘仁博.
High performance all-solid-state Li–Se battery based on selenium loaded on Ti3C2 MXene cathode.
Green Energy and Resources,
2,
100058,
2024.
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[14]
李崇兴.
Advanced all-solid-state lithium-selenium batteries enabled by selenium-nitrogen doped hierarchic meso-microporous carbon nanospheres composite cathode.
CHINESE CHEMICAL LETTERS,
34,
108083,
2023.
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[15]
高静.
Catalytic Performance of Amorphous and Crystalline RuO2 Loading on TiO2 Nanosheets in Lithium?Oxygen Batteries.
ACS Appl. Nano Mater.,
2023.
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[16]
赵涵.
Progress and perspectives on two-dimensional silicon anodes for lithium-ion batteries.
ChemPhysMater,
2,
1-19,
2023.
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[17]
.
Surface Ti vacancy passivation of Ti3C2O2 MXene via transition metal atoms as high-performance potassium-ion batteries anodes.
applied surface science,
630,
2023.
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[18]
王忠潇.
Electrocatalytic hydrogen evolution performance of modified Ti3C2O2 doped with non-metal elements: A DFT study.
ChemPhysMater,
1,
2022.
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[19]
朱雨廷.
2D Co-doped MnCr2O4 nanosheets as efficient bifunctional cathode materials for long-life Li–O2 batteries.
Inorganic Chemistry Frontiers,
2023.
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[20]
刘清媛.
Electrochemically prelithiated carbon anodes with regulated Na-ion intercalation behaviours for advanced sodium-ioni energy storage devices.
Journal of Materials Chemistry A,
11,
2023.
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