深圳技术九游网页版·官方端入口新材料与新能源学院导师:刘晶

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深圳技术九游网页版·官方端入口新材料与新能源学院导师:刘晶

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深圳技术九游网页版·官方端入口新材料与新能源学院导师:刘晶 正文

刘晶 助理教授
个人介绍:
刘晶,工学博士,助理教授,深圳市海外高层次“孔雀计划”人才(C类)。2017年博士毕业于爱荷华州立九游网页版·官方端入口。2017年8月进入日本东京九游网页版·官方端入口开始研究工作。2019年回国加入深圳技术九游网页版·官方端入口。主要研究领域包括微纳米材料如薄膜,二维材料的热物性测量及传热理论研究;微电子器件散热材料开发及热管理技术。近五年内在ACS Nano, ACS Applied Materials and Interfaces, Nanoscale, Carbon, Physical Review B等领域内重要期刊发表论文16篇。
教育背景:
2013.01-2017.05     爱荷华州立九游网页版·官方端入口,工程热物理专业,博士,导师:Xinwei Wang
2008.09-2012.06     东南九游网页版·官方端入口,热能与动力工程专业,学士
工作经历:
2019.03-至今           深圳技术九游网页版·官方端入口,新材料与新能源学院,助理教授
2017.08-2019.03     东京九游网页版·官方端入口,机械学院,博士后,导师:Junichiro Shiomi
主要荣誉:
• 2019年入选深圳市海外高层次人才
• 2016年获得爱荷华州立九游网页版·官方端入口“Research Excellence Award”
研究方向:
1. 微纳米材料如薄膜,二维材料的热物性测量及传热理论研究
2. 微电子器件散热材料开发及热管理技术
科研项目:
4. 广东省基础与应用基础研究基金区域联合基金项目2020.10-2023.9,10万,在研,主持
3. 深圳技术九游网页版·官方端入口高端人才研究经费,2020.01-2022.12,270万元,在研,主持
2. 广东省普通高校特色创新项目,2020.01-2021.12,10万,参与
1. 深圳技术九游网页版·官方端入口校企合作研发项目,2019.06-2021.05, 31.5万,参与
代表论文:
First author publications:
1. S. Xu#, J. Liu#, X. Wang, 2020, “Thermal Conductivity Enhancement of Polymers via Structure Tailoring," invited review, Journal of Enhanced Heat Transfer, 27, 463-489.(As co-first author)
2. J. Liu,S.H. Ju, N. Nishiyama, J. Shiomi, 2019,“Anomalously low thermal conductivity in superhard cubic Si3N4”, Physical Review B, 100, 064303.
3. M. Han#, J. Liu#, Y. Xie, and X. Wang, 2018, “Sub-µm c-axis Structural Domain Size of Graphene Paper Uncovered by Low-momentum Phonon Scattering”, Carbon, 126, 532-543. (As co-first author)
4. T. Wang#, J. Liu#, B. Xu, R. Wang, et al., 2017, "Identification of Crystalline Orientation of Black Phosphorus by Optothermal Raman Spectroscopy," ChemPhysChem, 18, 1-8. (cover page of ChemPhysChem)
5. J. Liu, W. Qu, Y. Xie, et. al, 2017, "Thermal Conductivity and Annealing Effect on Structure of Lignin-based Microscale Carbon Fibers," Carbon, 121, 35-47.
6. P. Yuan#, J. Liu#, R. Wang, and X. Wang, 2017, "Hot Carrier Diffusion Coefficient of Sub-10 nm Virgin MoS2: Uncovered by Non-Contact Optical Probing," Nanoscale,9,6808-6820. (As co-first author)
7. J. Liu, T. Wang, S. Xu, et. al, 2016, “Thermal Conductivity of Giant Mono to Few-layered CVD Graphene Supported on Organic Substrate”, Nanoscale, 8, 10298-10309.
8. J. Liu, Z. Xu, Z. Cheng, S. Xu, and X. Wang, 2015, “Thermal Conductivity of Ultra-High Molecular Weight Polyethylene Crystal: Defect-effect Uncovered by 0 K limit Phonon Diffusion”, ACS Applied Materials and Interfaces,7, 27279-27288.
9. J. Liu, X. Wang, 2015, “Characterization of Thermal Transport in One-Dimensional Microstructures Using Johnson Noise Electro-Thermal Technique,” Applied Physics A, 119, 871-879.
Co-author publications:
1. Y. Xie, B. Zhu, J. Liu, Z. Xu, X. Wang, 2017 "Thermal Reffusivity: Uncovering Phonon Behavior, Structural Defects, and Domain Size," Frontiers in Energy,1,143-157.
2. M. Han, P. Yuan, J. Liu, S. Si, et al., 2017,“Interface Energy Coupling between β-tungsten Nanofilm and Few-layered Graphene”, Scientific Reports,7,12213.
3. W. Qu, J. Liu, Y. Xue, X. Wang and X. Bai, 2017, “Potential of Producing Carbon Fiber from Biorefinery Corn Stover Lignin with High Ah Content,” Journal of Applied Polymer Science, 134, 45736.
4. B. Zhu, J. Liu, T. Wang, M. Han, S. Vallopilly, S. Xu, and X. Wang, 2017 "Novel Polyethylene Fibers of Very High Thermal Conductivity Enabled by Amorphous Restructuring," ACS Omega, 2, 3931−3944.
5. T. Wang, R. Wang, P. Yuan, S. Xu, J. Liu, and X. Wang, 2017, "Interfacial Thermal Conductance between Mechanically Exfoliated Black Phosphorus and SiOx: Effect of Thickness and Temperature," Advanced Materials Interfaces, 1700233.
6. M. Kadir, X. Wang, B. Zhu, J. Liu, D. Harland, and C. Popescu, 2017, "The Structure of the “Amorphous” Matrix of Keratins," Journal of Structural Biology, 198, 116-123.
7. C. Deng, Y. Sun, L. Pan, T. Wang, Y. Xie, J. Liu, B. Zhu and X. Wang, 2016, "Thermal Diffusivity of Single Carbon Nanocoil: Uncovering the Correlation with Temperature and Domain Size," ACS Nano, 10, 9710-9719.
8. P. Yuan, C. Li, S. Xu, J. Liu, X. Wang, 2016, "Interfacial Thermal Conductance between Few to Tens of layered-MoS2and c-Si: Effect of MoS2," Acta Materialia,122, 152-165.
联系方式:
电子邮箱:liujing@sztu.edu.cn
 
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