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中山大学珠海校区微电子科学与技术学院导师教师师资介绍简介-黄媛助理教授

本站小编 Free考研考试/2021-05-15

职称:
助理教授
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学术经历:
北京大学????电子科学与技术??????博士后
香港中文大学????材料科学与工程系??????博士
中山大学 物理科学与工程技术学院?????硕士
中山大学 物理科学与工程技术学院 学士
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邮箱:huangy723@mail.sysu.edu.cn
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研究方向:
柔性可穿戴电子器件及系统集成、储能器件
(正招收2021级硕士研究生,欢迎联系!)
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学术活动:
在Nano energy,Npj flexible electronics,Carbon,Journal of Power Sources,Nanoscale等期刊发表论文14篇,授权发明专利3项,H-index为11.
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学术著作:(*通讯作者, #共同第一作者)
[1] Y. Huang#, Z. Li#, S. Jin, S. Zhang, H. Wang, P. Hiralal, G. A. J. Amaratunga, H. Zhou*,Carbon Nanohorns/Nanotubes: An Effective Binary Conductive Additive in the Cathode of High Energy-density Zinc-ion Rechargeable Batteries. Carbon 2020, 167, 431-438.
[2] J. Zhang, Y. Huang*, Z. Li, C. Gao, S. Jin, S. Zhang, X. Wang, H. Zhou*, Polyacrylic Acid Assisted Synthesis of Free-standing MnO2/CNTs Cathode for Zinc-ion Batteries. Nanotechnology 2020, 31, 375401.
[3] Z. Li, Y. Huang*, J. Zhang, S. Jin, S. Zhang, H. Zhou*, One-step Synthesis of MnOx/PPy Nanocomposite as a High-performance Cathode for a Rechargeable Zinc-ion Battery and Insight into Its Energy Storage Mechanism. Nanoscale 2020, 12, 4150-4158.
[4] Y. Huang#, J. Zhang#, J. Liu, Z. Li, S. Jin, Z. Li, S. Zhang, H. Zhou*, Flexible and Stable Quasi-solid-state Zinc Ion Battery with Conductive Guar Gum Electrolyte. Materials Today Energy 2019, 14, 100349.
[5] Y. Huang#, J. Liu#, J. Zhang, S. Jin, Y. Jiang, S. Zhang, Z. Li, C. Zhi, G. Du, H. Zhou*, Flexible Quasi-solid-state Zinc Ion Batteries Enabled Highly Conductive Carrageenan Bio-polymer Electrolyte. RSC Advances 2019, 9, 16313-16319.
[6] Y. Huang#, J. Liu#, Q. Huang, Z. Zheng, P. Hiralal, F. Zheng, D. Ozgit, S. Su, S. Chen, P.-H. Tan, S. Zhang, H. Zhou*, Flexible High Energy Density Zinc-ion Batteries Enabled by Binder-free MnO2/reduced Graphene Oxide Electrode. npj Flexible Electronics 2018, 2, 21.
[7] Y. Huang, Z. Xu, J. Mai, T.-K. Lau, X. Lu, Y.-J. Hsu, Y. Chen, A. C. Lee, Y. Hou, Y. S. Meng, Q. Li*, Revisiting the Origin of Cycling Enhanced Capacity of Fe3O4 Based Nanostructured Electrode for Lithium Ion Batteries. Nano Energy 2017, 41, 426-433.
[8] Y. Huang#, H. Liu#, L. Gong, Y. Hou, Q. Li*, A Simple Route to Improve Rate Performance of LiFePO4/Reduced Graphene Oxide Composite Cathode by Adding Mg2+ via Mechanical Mixing. Journal of Power Sources 2017, 347, 29-36.
[9] Y. Huang#, H. Liu#, Y. C. Lu, Y. Hou, Q. Li*, Electrophoretic Lithium Iron Phosphate/Reduced Graphene Oxide Composite for Lithium Ion Battery Cathode Application. Journal of Power Sources 2015, 284, 236-244.
[10] Y. Huang, J. C. She*, W. J. Yang, S. Z. Deng, N. S. Xu, Control-Assembly of Layer-by-Layer Stacking Continuous Graphene Oxide Films and Its Application for Actively-Controlled Field Electron Emission Cathode. Nanoscale 2014, 6, 4250-4257.
[11] Y. Huang, W. L. Wang, J. C. She*, Z. B. Li, S. Z. Deng, Correlation Between Carbon-Oxygen Atomic Ratio and Field Emission Performance of Few-Layer Reduced Graphene Oxide. Carbon 2012, 50, 2657-2665.
[12] D. Lan, W. Wang, L. Shi, Y. Huang, L. Hu, Q. Li*, Phase Pure Sn4P3 Nanotops by Solution-liquid-solid Growth for Anode Application in Sodium Ion Batteries. Journal of Materials Chemistry A 2017, 5, 5791-5796.
[13] N. Zhang, C. Chen, X. Yan, Y. Huang, J. Li, J. Ma*, D. H. L. Ng*, Bacteria-inspired Fabrication of Fe3O4-Carbon/Graphene Foam for Lithium-Ion Battery Anodes. Electrochimica Acta 2016, 223, 39-46.
[14] N. Zhang, X. Yan, Y. Huang, J. Li, J. Ma*, D. H. L. Ng*, Electrostatically Assembled Magnetite Nanoparticles/Graphene Foam as a Binder-Free Anode for Lithium Ion Battery. Langmuir 2017, 33, 8899-8905.






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