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陈金菊
Personal information
Professor Supervisor of Doctorate Candidates
Name (Simplified Chinese):
陈金菊
Name (Pinyin):
Chen Jinju
E-Mail:
jinjuchen@uestc.edu.cn
Education Level:
With Certificate of Graduation for Doctorate Study
Gender:
Female
Degree:
Doctor of Engineering
Status:
Professor
Honors and Titles:
四川省科技进步二等奖
More +
Current position:
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Scientific Research
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Paper Publications
[1] Surface modification with special morphology for the metallization of polyimide film,
Applied Surface Science
,
[2] Structural regulation of silver nanowires and their application in flexible electronic thin films,
Materials & Design
, vol. 154, pp. 266–274,
[3] Facile large-scale preparation of high-performance copper electrode materials for BaTiO3 ceramic capacitors,
Journal of Materials Science: Materials in Electronics
, vol. 30, pp. 3459–3464, Jan 2019.
[4] Electro-dissolution kinetics of swept-frequency voltage modulation on the polarization of high-purity aluminum,
Journal of Materials Science Letters
,
[5] The effect of anodizing temperature on the structure and electrical properties of Al-Ti composite oxide film,
Science in China series e-technological Sciences
,
[6] The effect of anodizing voltage on the electrical properties of Al-Ti composite oxide film on aluminum,
ournal of Electroanalytical Chemistry
,
[7] Al2O3-TiO2 composite oxide films on etched aluminum foil by hydrolysis precipitation and anodizing,
ournal of Materials Science
,
[8] Formation of Al-Si Composite Oxide Film by Hydrolysis Precipitation and Anodizing,
Journal of Electronic Science and Technology of China
,
[9] First principles study on electronic properties and occupancy sites of molybdenum doped into LiFePO4,
Solid State Communications
,
[10] A novel humility sensor based on alumina nanowires film,
Journal of Physics D: Applied Physics
,
[11] Formation of Al2O3-TiO2 composite oxide films on aluminum foil by cathodic electrodeposition and anodizing,
Ceramics International
,
[12] Formation of Al2O3-Nb2O5 composite oxide films on low-voltage etched aluminum foil by complexation-precipitation and anodizing,
Ceramics International
,
[13] Synthesis and electrochemical performance of LiFePO4/graphene composites by solid-state reaction,
Materials Letters
,
[14] An easy and eco-friendly method to prepare reduced graphene oxide with Fe(OH)2 for use as a conductive additive for LiFePO4 cathode materials,
RSC Advances
,
[15] Defect effects on the physical and electrochemical properties of nanoscale LiFe0.92PO4and LiFe0.92PO4/C/graphene composites,,
Nanoscale
,
[16] ynthesis and Characterization of Li0.97K0.03FePO4/graphene Composites by Carbonthermal Reduction Method,
Applied Mechanics and Materials
,
[17] A joint experimental and theoretical study on the effect of manganese doping on the structural, electrochemical and physical properties of lithium iron phosphate,
RSC Advances
,
[18] The effect of Fe vacancy defects on the physical and electrochemical characterizations of LiFe0.92PO4: A combined experimental and theoretical study,
Electrochimica Acta
,
[19] Improved electrochemical properties of LiFePO4/Cu cathode material synthesized via an optimized two-step chemical process,
Journal of Alloys and Compounds
,
[20] A facile process combined with inkjet printing, surface modification and electroless deposition to fabricate adhesion-enhanced copper patterns on flexible polymer substrates for functional flexible electronics,
Electrochim. Acta
,
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