Creation, innovation and Entrepreneurship
一、个人基本信息
姓名:黄小娜
职称:副研究员
电子邮箱:xnhuang@whu.edu.cn
联系方式:13971143581
办公地址:9B405
人才称号:武汉英才
二、教育及工作经历
2025.2~至今:永利yl23411集团官网,永利yl23411集团,动力工程系,副研究员
2021.3~2025.1:永利yl23411集团官网,永利yl23411集团,动力工程系,讲师
2017-2020:香港城市大学,机械工程系(热物理方向),哲学博士
2015~2018:中国科学技术大学,工程科学公司,动力工程及工程热物理,工学博士
2011~2015:永利yl23411集团官网,永利yl23411集团,能源动力系统及自动化,工学学士
三、研究领域
微纳尺度能量转化及传递,热测量实验及模拟方法,超快能量释放过程。
四、荣誉和奖励
[1] 低碳科学国际会议,DeCarbon Yong Scholar Award(2023)
[2] 碳中和国际会议,Best Oral Presentation Second Prize(2023)
[3] 中国动力工程学会第九届青年学术年会优秀论文(2022)
[4] 第七届全国热传导研讨会 (WTT2023) 最佳海报奖(2023)
五、代表性论文及专利
以第一/通讯作者身份在Adv. Sci.、Appl. Phys. Lett.、Int. J. Heat Mass Transfer等期刊发表SCI论文24篇,申请/授权国家发明专利8项,担任《热力发电》等3本期刊青年编委。
部分代表作:
[1] Xu, J.#; Huang, X.#; Sheng, Y.; Sun, Q.; Zhang, H.; Bao, H.*; Yue, Y.* (2024). Direct Observation of Substantial Phonon Nonequilibrium Near Nanoscale Hotspots in Gallium Nitride. Advanced Science, 2411040.
[2] Huang, X.; Sun, Q.; Xu, S.; Yue, Y.*; Wang, X.; Xuan, Y. (2024). Observation of enhanced heat transfer between a nanotip and substrate at nanoscale distances via direct temperature probing with Raman spectroscopy. Applied Physics Letters, 125, 072201.
[3] Li, D.#; Huang, X.#; Liu, Z.#; Liu, W.; Xu, S.; Yue, Y.* (2023). Divergent interfacial thermal transport in MoS2/Si heterostructure over optical phonon modes. Applied Physics Letters, 123, 252201.
[4] Huang, X.#; Wang, Y.#; Deng, S.; Yue, Y.* (2023). Laser polarization associated periodic oscillation of thermal response in silicon nanotip. International Journal of Heat and Mass Transfer, 209, 124124.
[5] Huang, X.; Guo, J.; Yue, Y.* (2022). Graphene coated 3C-SiC with improved irradiation resistance and enhanced heat conduction property after collision cascade. International Journal of Heat and Mass Transfer, 194, 122988.
[6] Liu, W.; Huang, X.*; Yue, Y.* (2023). Tuning thermal transport across monolayer MoS2/Si heterostructure via substrate nanogrooving. International Journal of Heat and Mass Transfer, 201, 123673.
[7] Liu, W.#; Sun, Q.#; Zhang, J.; Huang, X.*; Yue, Y.* (2023). Annealing-Induced One Order of Magnitude Enhancement in Heat Dissipation at Graphene/SiO2 Interface. Materials Today Nano, 100383.
[8] Huang, X.; Luo, K.; Shen, Y.; Yue, Y.; An, Q.* (2023). Grain boundaries induce significant decrease in lattice thermal conductivity of CdTe. Energy and AI, 11, 100210.
[9] Huang, X.; Shen, Y.; An, Q.* (2022). Nanotwinning induced decreased lattice thermal conductivity of high temperature thermoelectric boron subphosphide (B12P2) from deep learning potential simulations. Energy and AI, 8, 100135.
[10] Huang, X.#; Li, C.#; Tan, K.; Wen, Y.*; Guo, F.*; Li, M.; Huang, Y.; Sun, C.; Gozin, M.*; Zhang, L.* (2021). Applying Machine Learning to Balance Performance and Stability of High Energy Density Materials. iScience, 24, 102240.
六、科研项目
主持国家级项目1项,以分承研单位主持国家级项目2项,以项目骨干获批基金委重点项目1项,获批主持湖北省基金、其他产学研合作项目共6项。
七、指导员工情况
[1] 第十六届全国老员工节能减排社会实践与科技竞赛全国二等奖,指导老师,2023.08
[2] 第十七届全国老员工节能减排社会实践与科技竞赛全国三等奖,指导老师,2024.08
[3] 永利yl23411集团官网2023届优秀学士学位论文,指导老师,2023.06
[4] 永利yl23411集团官网2022届优秀学士学位论文,指导老师,2022.06
八、教学工作
本科生课程:
[1] 《强化传热技术》
[2] 《传热学》