Professor
Supervisor of Doctorate Candidates
Supervisor of Master's Candidates
Date of Employment:2016-09-28
School/Department:School of Physics
Administrative Position:特聘副教授
Education Level:PhD Graduate
Sex:Male
Contact Information:email: xiaoming.yuan@csu.edu.cn
Degree:Doctoral degree
Status:Employed
Alma Mater:Australian National University
Discipline:Physics
袁小明,博士,教授,博士生导师,湖南省杰出青年基金获得者(2024)、湖南省芙蓉青年学者(2020),优秀青年基金获得者(2021)。中南大学微纳加工与器件制造平台执行主任:
https://wl.csu.edu.cn/wnjgyjjzzpt/ptgk.htm
2005-2011年在中南大学完成本科及硕士教育;2011年-2016年在澳大利亚国立大学跟随Chennupati Jagadish院士攻读博士学位。2015年获得中国留学生自费奖,2016年毕业于澳大利亚国立大学。
研究领域:第三代半导体材料与光电器件、低维半导体材料外延生长、微纳光电器件。拥有完善的器件仿真、半导体外延生长、微纳光学表征、光电器件加工及表征实验室,含共用微纳加工平台实验室500平米,研究以第一作者或通讯作者身份在Adv. Mater., Adv. Funct. Mater., Nano Lett., ACS Nano等国际高影响力期刊上发表相关论文90余篇,主持国家自然科学基金项目4项,其中面上项目3项(2025, 2022, 2019),青年项目1项(2017)。申请人荣获湖南省光学科技进展奖三等奖(2021)。研究合作者分布在加拿大、美国、西班牙、澳大利亚等国家。与澳大利亚建立了定期交流访问的合作机制。
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课题组每年计划招收1名博士,2-3名硕士生, 4-6名本科生。欢迎优秀推免生和考研同学随时咨询报名, 来信必复!!!
联系方式:xiaoming.yuan@csu.edu.cn(邮箱)
研究课题组气氛活跃,热爱探索新知识并一究到底。希望能找到志同道合的人一起进行一场研究的旅行。期待各位博士生、硕士生及本科生的加入。
网址:http://faculty.csu.edu.cn/yuanxiaoming/zh_CN/index.htm
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往届毕业季风采

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湖南海归人物专访|服务社会主义现代化国家建设,投身湖南“三高四新”强省战略

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近年来部分论文列表:
2026
1. Chang Lu, Meili Long, Huan Liu, Haixia Zhu, Zhihui Chen, Zhenqing Li, Jiong Yang, Xutao Zhang, Jun He and Xiaoming Yuan*; Design and controlled vdW epitaxy of WSe2/PbI2 heterostructure for robust momentum-direct interlayer exciton emission at room temperature. Appl. Phys. Rev. 1 March 2026; 13 (1): 011414.
2. Xinhui Yang, Mengya Li, Xiaojing Du, Chaochao Shen, Zhihui Chen, Jun He and Xiaoming Yuan*, “Optical Anisotropy and Polarization Selectivity in WS2/CrSBr Heterostructure for Multifunctional All-Optical Logic Gates”. J Phys Chem Lett. 2026, 17(6):1701-1710.
2025
1. Mengya Li, Xinhui Yang, Chang Lu, Meili Long, Zhihui Chen, Haitao Chen, Xiaoming Yuan* and Jun He*, “Symmetry breaking in a WS2/Te heterostructure with enhanced second-harmonic generation and strong anisotropic optical properties”Nanoscale, 2025,17, 23129-23138
2. Mingyi Xu, Xinhui Yang, Xiao Guo, Jie Jiang, Shula Chen, Mengjian Zhu, Jiayu Dai, Fangyu Guo* and Xiaoming Yuan *, “Twist angle dependent high degree of anisotropic emission and phonon scattering in WS2/NbOCl2 heterostructures”.Nanoscale, 2025,17, 6079-6089
3. Xinhui Yang#, Yiduo Wang, Xinxin Peng, Defeng Xu, Fengyi Zhang, Jiong Yang, Zhihui Chen , Yingwei Wang, Yongbo Yuan, Jun He, Xiaoming Yuan*. “Exciton regulation and carrier dynamics in WS2 coupled with gap-adjustable plasmonic nanocavity” Nano Research, 2025, 18, 94907074.
4. Xinhui Yang, Yiduo Wang, Xinxin Peng, Defeng Xu, Fengyi Zhang, Jiong Yang, Zhihui Chen, Yingwei Wang, Yongbo Yuan, Jun He, and Xiaoming Yuan*, “Exciton regulation and carrier dynamics in WS2 coupled with gap-adjustable plasmonic nanocavity”.Nano Research, 2025, 18(1): 94907074.
5. Rong Lu, Chang Lu, Yanran Li, Honglin Song, Kaiyun Gou, Xiaoming Yuan,* and Jie Jiang*. “Van der Waals Epitaxy of CsPbI3/MoS2 Heterojunction Phototransistors for Neuromorphic Computing”J. Phys. Chem. Lett. 2025, 16, 9830−9838.
6. Yuxuan He, Zhaobiao Diao, Jiayu Meng, Qingqing Cao, Yanhui Zhang, Chang Lu,Ziteng Zhang, Can Zhou, Liuyan Fan, Shuaiqin Wu, Xutao Zhang, Xudong Wang*, PingPing Chen*, Xiaoming Yuan*, Wei Lu; Ferroelectric-gated highly sensitive InGaAs nanowire near-infrared photodetectors. Appl. Phys. Lett. 22 December 2025; 127 (25): 253505.
7. Chang Lu, Mengya Li, Yuxuan He, Fengyi Zhang, Han Huang and Xiaoming Yuan*; Van der Waals epitaxy of (BA)2PbI4/WSe2 heterostructures with strong interlayer exciton emission. Appl. Phys. Lett. 30 June 2025; 126 (26): 263101.
9. Chao Zhang, Kai Wu, Luyan Wu, Guoyang Cao, Xiaoyi Liu, Cheng Zhang, Shaolong Wu, Xiaoming Yuan, Linglong Zhang, Xiaofeng Li and Jiong Yang. “Polarization-Sensitive Enhancement of Photoluminescence and Interlayer Absorption in WSe2/InSe Heterostructure via Plasmonic Metastructure” Small 2025, 21, 2411761.
2024
1. Jingjing Shen, Haitao Chen, Jun He, Yejun Li, Xinhui Yang, Mengjian Zhu, and Xiaoming Yuan, Enhanced surface passivation of GaAs nanostructures via an optimized SiO2 sol-gel shell growth, Appl. Phys. Lett. 124, 121112 (2024), https://doi.org/10.1063/5.0185838.
2. Chang Lu, Shunhui Zhang, Meili Chen, Haitao Chen, Mengjian Zhu, Zhengwei Zhang, Jun He, Lin Zhang, Xiaoming Yuan*. “Van der Waals epitaxy of type-II band alignment CsPbI3/TMDC heterostructure for optoelectronic applications”. Front. Phys, 2024, 19, 53206.
3. Chao Zhang, Kai Wu, Lu Gan, Xiaoyi Liu, Cheng Zhang, Shaolong Wu, Xiaoming Yuan, Linglong Zhang, Jinyang Xi*, Jiong Yang* and Xiaofeng Li*, “Momentum-Direct Infrared Interlayer Exciton and Photodetection in Multilayer van der Waals Heterostructures”.ACS Nano 2024, 18, 49, 33520–33530.
2023年:
[1]Xinrong Zuo, Chenwei Zhu, Chenyu Yao, Zhen Hu, Liuyan Fan, Yan Wu, Jun He, Xiaoshuang Chen, Pingping Chen*, Xiaoming Yuan*, Lin Wang,* and Wei Lu, “High Sensitivity HgTe Room Temperature Terahertz Photodectector”, APL Photon. 2023, 8, 046109.
[2]Yuan X, Yang X, Huang Z, et al. Ultrahigh Polarization-Sensitive Raman Scattering and Photon Emission in a Plasmonic Au/Biphenyl-4-thiol/Ag Nanowire Nanocavity[J]. The Journal of Physical Chemistry C, 2023, 127(36): 17880-17887.
[3]Liu Y, Liu X, Gong J, et al. Electronic Structure Modulation of Fe–N4–C for Oxygen Evolution Reaction via Transition Metal Dopants and Axial Ligands[J]. ACS Applied Materials & Interfaces, 2023, 15(34): 40614-40622.
[4]Yang X, Zhang S, Zhang Z, et al. Controlled fabrication of CsPbI2Br/transition metal dichalcogenide van der Waals heterostructure with fast carrier transfer process and interlayer exciton formation[J]. Physica E: Low-dimensional Systems and Nanostructures, 2023, 153: 115788.
2022年:
[1]Fang W, Wen Z, Chen L, et al. Constructing inorganic-rich solid electrolyte interphase via abundant anionic solvation sheath in commercial carbonate electrolytes[J]. Nano Energy, 2022, 104: 107881.
[2]Saraswathy Vilasam A G, Prasanna P K, Yuan X, et al. Epitaxial Growth of GaAs Nanowires on Synthetic Mica by Metal–Organic Chemical Vapor Deposition[J]. ACS Applied Materials & Interfaces, 2022, 14(2): 3395-3403.
[3]Xinrong Zuo, Ziyuan Li, Wei Wen Wong, Yang Yu, Xi Li, Jun He, Lan Fu, Hark Hoe Tan, Chennupati Jagadish, Xiaoming Yuan* (袁小明), “Design of InAs nanosheet arrays with ultrawide polarization-independent high absorption for infrared photodetection”, Applied Physics Letters, 2022, 120, 071109
2021年:
[1]Xiaoming Yuan*#, Dong Pan#, Yijin Zhou, Xutao Zhang, Kun Peng, Bijun Zhao, Mingtang Deng*, Jun He*, Hark Hoe Tan and Chennupati Jagadish, “Selective area epitaxy of III-V nanostructure arrays and networks: growth, applications and future directions”, Applied Physics Reviews, 2021, 8, 021302.
[2]Long Fang, Shaohua Tao, Zhenzhen Tian, Kunwu Liu, Xi Li, Jiang Zhou, Han Huang, Jun He, Xiaoming Yuan, “Controlled growth of transition metal dichalcogenide via thermogravimetric prediction of precursors vapor concentration”, Nano Research, 2021, accepted
[3]Naiyin Wang*, Wei Wen Wong, Xiaoming Yuan*, Li Li, Chennupati Jagadish, Hark Hoe Tan, “Understanding shape evolution and phase transition in InP nanostructures grown by selective area epitaxy”, Small, 2021, 17, 2100263.
2020年:
[1]Xiaoming Yuan*#, Naiyin Wang#, Zhenzhen Tian, Fanlu Zhang, Li Li, Mark Lockrey, Jun He*, Chennupati Jagadish, Hark Hoe Tan, “Facet-dependent growth of InAsP quantum wells in InP nanowire and nanomembrane array”, Nanoscale Horizons, 2020, 5, 1530.
[2]Fang L, Yuan X, Liu K, et al. Direct bilayer growth: a new growth principle for a novel WSe 2 homo-junction and bilayer WSe 2 growth[J]. Nanoscale, 2020, 12(6): 3715-3722.
2019年:
[1]Naiyin Wang, Xiaoming Yuan*, Xu Zhang*, Qian Gao, Bijun Zhao, Li Li, Mark Lockrey, Hark Hoe Tan, Chennupati Jagadish, Philippe Caroff. “Shape Engineering of InP Nanostructures by Selective Area Epitaxy”, ACS Nano, 13 (2019), 13, 7261-7269. (SCI,IF=13.903).
[2]Zhilin Liu, Ioannis Papadimitriou, Miguel Castillo-Rodríguez, Chuanyun Wang, Gustavo Esteban-Manzanares, Xiaoming Yuan*, Hark H. Tan, Jon M. Molina-Aldareguía, Javier Llorca*, “Mechanical Behavior of InP Twinning Superlattice Nanowires”, Nano Letters, 19 (2019), 4490-4497. (SCI,IF= 12.279).
[3] Xiaoming Yuan*, Lin Li, Ziyuan Li, Fan Wang*, Naiyin Wang, Lan Fu, Jun He, Hark Hoe Tan, Chennupati Jagadish. “Unexpected benefits of stacking faults on the electronic structure and optical emission in wurtzite GaAs/GaInP core/shell nanowires”, Nanoscale, 11 (2019), 9207-9215.(SCI,IF=6.97)
[4]J. Seidl, J. G. Gluschke, Xiaoming Yuan, S. Naureen, N. Shahid, Hark Hoe Tan, Chennupati Jagadish, Adam P. Micolich,* Philippe Caroff, “Regaining a Spatial Dimension: Mechanically Transferrable Two-Dimensional InAs Nanofins Grown by Selective Area Epitaxy”, Nano Letters, 19 (2019), 4666-4677. (SCI,IF= 12.279).
[5] Iraj Abbasian Shojaei, Samuel Linser, Giriraj Jnawali, N. Wickramasuriya, Howard E. Jackson, Fariborz Kargar, Alexander A. Balandin, Xiaoming Yuan, Philip Caroff, Hark Hoe Tan, and Chennupati Jagadish, “Strong Hot Carrier Effects in Single Nanowire Heterostructures”, Nano Letters, 19 (2019), 5062-5069. (SCI,IF= 12.279).
[6]Zhiqin Zhong, Xinlei Li , Jiang Wu , Cheng Li, Ruo Bing Xie, Xiaoming Yuan, Xiaobin Niu , Wenhao Wang, Xiaorong Luo, Guojun Zhang, Zhiming Wang, Hark Hoe Tan , and Chennupati Jagadish, “Wavelength-tunable InAsP quantum dots in InP nanowires”, Applied Physics Letters, 2019, 115, 053101.
[7]Long Fang, Haitao Chen, Xiaoming Yuan* , Han Huang, Gen Chen, Lin Li, Junnan Ding, Jun He, Shaohua Tao*, “Quick Optical Identification of the Defect Formation in Monolayer WSe2 for Growth Optimization”, Nanoscale Research Letters, 2019, 14, 274-283.
[8]Xutao Zhang, Ziyuan Li, Xiaomei Yao, Hai Huang, Dongdong Wei, Chen Zhou, Zhou Tang, Xiaoming Yuan, Pingping Chen, Weida Hu, Jin Zou, Wei Lu,* and Lan Fu, “Light-Induced Positive and Negative Photoconductances of InAs Nanowires toward Rewritable Nonvolatile Memory”, ACS Applied Electronic Materials, 2019, 1, 1825-1831.
2015年:
[1]Xiaoming Yuan*, Philippe Caroff*, Jennifer Wong-Leung, Lan Fu, Hark Hoe Tan, Chennupati Jagadish. “Tunable polarity in a III-V nanowire by droplet wetting and surface energy engineering”, Advanced Materials, 27 (2015), 6096-6103. (SCI,IF=25.809)
[2] Xiaoming Yuan*, Philippe Caroff*, Fan Wang, Yanan Guo, Yuda Wang, Howard E. Jackson, Leigh M. Smith, Hark Hoe Tan, Chennupati Jagadish. “Antimony induced {112} A facetted triangular GaAs1-xSbx/InP core/shell nanowires and their enhanced optical quality”, Advanced Functional Materials, 25 (2015), 5300-5308. (SCI, IF=15.621).
[3] Xiaoming Yuan*, Philippe Caroff*, Jennifer Wong-Leung, Hark Hoe Tan, Chennupati Jagadish. “Controlling the morphology, composition and crystal structure in gold-seeded GaAs1-xSbx nanowires”, Nanoscale, 7 (2015), 4995-5003. (SCI, IF=6.97).