程亚娟 讲师
教育背景:博士
研究领域:凝聚态物理,计算材料学
研究方向:微纳尺度热传导
电子邮箱:yajuancheng@gzhu.edu.cn
所在系所:大学物理部
▍个人简介
本科及硕士毕业于中南大学,博士毕业于瑞典皇家工学院,主要从事微纳尺度热输运、凝聚态物质电学性质、热电材料等方面的研究。发表SCI论文26篇,其中以第一作者或通讯作者在Materials Today Physics,Applied Surface Science,Physical Review B等期刊上发表论文16篇。主持国家自然科学基金青年基金、广东省基础与应用基础研究基金面上项目、广东省基础与应用基础研究基金青年项目、博士后科学基金面上项目等科研项目。曾获得第16届国际薄膜会议(杜布罗夫尼克,克罗地亚)最佳海报奖,广东省海外博士后人才支持项目等奖励。
▍担任主要课程
本科生课程:大学物理、大学物理实验
▍主持课题
1. 基于非晶量子点的声子共振设计及相关机理研究,国家自然科学基金青年基金(30万元),2024.1-2026.12,主持,在研
2. 低维材料表面无序声子共振的设计及相关机理研究(15万元),广东省基础与应用基础研究基金面上项目(15万元),2024.1-2026.12,主持,在研
3. 局域声子共振机理及其在块体材料热导率调控中的应用,广东省基础与应用基础研究基金青年基金项目(10万元),2022.10-2025.9,主持,在研
4. 纳米材料表面共振结构对热导率的调制及其机理,中国博士后面上基金(8万元),2019-2021,主持,结题
5. 微纳尺度热传导,中国材料基因工程高通量计算平台开放研究基金, 2023.6-2024.5,主持,结题
▍参与课题
1. “先驱体合成法制备超高温碳化物高熵陶瓷裂解机理及热稳定性的研究”,国家自然科学基金面上项目(54万元),2023-2026,参与,在研
2. “声子共振机理及其对纳米结构热导率的调制研究”, 国家自然科学基金青年基金项目 (25万元),2018-2020,参与,结题
▍主要论文
1. Yajuan Cheng, Honggang Zhang, Shiyun Xiong*, Sebastian Volz, Tao Zhang*, Tuning the Thermal Resistance of SiGe Phononic Interfaces across Ballistic and Diffusive Regimes, International Journal of Heat and Mass Transfer, accepted.
2. Zhijiao Huang, Shiyun Xiong, Wei Zhang*, Gaoyu Wang, Lixiang Wang, Jian Peng, Qinghua Li, Zhixin Liang, Yajuan Cheng* and Shaoming Huang*, Design of grid-like triple-carbon matrix confined ultrafine CoTe2 nanocrystals toward durable and fast potassium storage, J. Mater. Chem. A ,12 (2024) 15044-15054
3. Yajuan Cheng, Zheyong Fan,Tao Zhang, Masahiro Nomura, Sebastian Volz, Guimei Zhu, Baowen Li, Shiyun Xiong, Magic angle in thermal conductivity of twisted bilayer graphene, Materials Today Physics, 35 (2023): 101093
4. Yajuan Cheng, Shiyun Xiong*, Tao Zhang*, “Enhancing the Coherent Phonon Transport in SiGe Nanowires with Dense Si/Ge Interfaces”, Nanomaterials, 12 (2022) 4373;
5. Keqiang Li, Yajuan Cheng*, Maofeng Dou, Wang Zeng, Sebastian Volz and Shiyun Xiong*, Tuning the Anisotropic Thermal Transport in {110}-Silicon Membranes with Surface Resonances, Nanomaterials, 12 (2022) 123;
6. Yajuan Cheng, Masahiro Nomura, Sebastian Volz, Shiyun Xiong*, Phonon-dislocation interaction and its impact on thermal conductivity, Journal of Applied Physics, 130 (2021) 040902 (editor’s pick)
7. Hongying Wang#, Yajuan Cheng#, Zheyong Fan∗, Yangyu Guo, Zhongwei Zhang, Marc Bescond, Massahiro Nomura, Tapio Ala-Nissila, Sebastian Volz, and Shiyun Xiong*, Anomalous thermal conductivity enhancement in low dimensional resonant nanostructures due to imperfections, Nanoscale, 13 (2021) 10010-10015
8. Hongying Wang, Yajuan Cheng*, Masahiro Nomura, Sebastian Volz, Davide Donadio, Xiaohong Zhang*, and Shiyun Xiong*, Synergistic impeding of phonon transport through resonances and screw dislocations, Phys. Rev. B, 103 (2021) 085414
9. Xiaofei Sheng, Jing Wang, Yajuan Cheng*, and Zhe Zhao*, Controllable Fabrication of Large-Size Defect-Free Domains of 2D Colloidal Crystal Masks Guided by Statistical Experimental Design, Coatings, 11 (2021) 82
10. Zhang Fei#, Cheng Yajuan#, Niu Zhihui, Ye Jing, Dai Gaole, Zhang Xiaohong, Zhao Yu. Tailoring the voltage gap of organic battery materials based on a multi-electron redox chemistry, ChemElectroChem, 7 (2020) 1781-1788.
11. Zhuhong Li, Yajuan Cheng*, Yingming Yao, Shiyun Xiong*, Xiaohong Zhang*. Molecular Deposition Condition Dependent Structural and Charge Transport Properties of CBP Film, Computational Materials Science, 182 (2020) 109785-91
12. Xiaofei Sheng, Zhuhong Li and Yajuan Cheng*. Electronic and Thermoelectric Properties of V2O5, MgV2O5, and CaV2O5, Coatings, 10 (2020) 453-465
13. Xiaofei Sheng,Yajuan Cheng*,Yingming Yao*, Zhe Zhao*. Optimization of Synthesizing Upright ZnO Rod Arrays with Large Diameters through Response Surface Methodology,Processes, 8 (2020) 655-668
14. Yajuan Cheng, Jing Wang, Pär Göran Jönsson, Zhe Zhao. Optimization of high-quality vertically aligned ZnO rod arrays by the response surface methodology. Journal of Alloys and Compounds, 626 (2015) 180-188.
15. Yajuan Cheng, Jing Wang, Pär Göran Jönsson, Zhe Zhao. Improvement and optimization of the growth quality of upright ZnO rod arrays by the response surface methodology. Applied Surface Science, 351 (2015) 451-459.
16. Yajuan Cheng, Pär Göran Jönsson, Zhe Zhao. Controllable fabrication of large-area 2D colloidal crystal masks with large size defect-free domains based on statistical experimental design. Applied Surface Science, 313 (2014) 144-151.