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尹越峰

尹越峰 Yuefeng Yin

研究员 · 量子物理 + 计算材料科学

材料科学与工程系 / 物理与天文学院
澳大利亚莫纳什大学,墨尔本,维多利亚州

43 期刊论文
1123 引用次数
19 H 指数
12+ 科研年限
10 博士生指导
01

研究方向

我致力于运用和发展先进计算方法——包括密度泛函理论(DFT)、紧束缚建模以及机器学习势——揭示量子材料的电子、拓扑与输运性质。我的研究横跨凝聚态物理与材料科学,旨在发现具有超低能耗和超高速自旋传输特性的材料候选体,对下一代电子器件具有直接应用价值。我积极开展理论、实验与产业界的跨界合作。

面向量子物理的 DFT–紧束束缚计算流程开发

PythonFortranVASPwannier90MATLABC

2017 年 5 月 — 至今

面向自旋电子学的新型拓扑材料发现

VASPwannier90PythonFortranMATLAB

2017 年 5 月 — 至今

调控石墨烯以提升电子器件性能

VASPPythonMATLAB

2012 年 3 月 — 2018

超越石墨烯的二维材料探索

VASPwannier90

2012 年 3 月 — 至今

面向热电与自旋电子学的 Mg₃Bi₂ 声子工程

VASPPhonopyQuantum ESPRESSOPython

2023 年 1 月 — 至今

面向拓扑材料的开源计算笔记本

PythonJupyterPymatgenASEwannier90

2024 年 7 月 — 至今

02

教育背景

材料科学与工程 博士

莫纳什大学,澳大利亚 维多利亚州 墨尔本

论文:通过分子吸附调控石墨烯电子结构

导师:Nikhil Medhekar,共同导师:Jiri Cervenka

材料科学与工程 学士(2+2 联合培养项目)

莫纳什大学 / 中南大学,澳大利亚 维多利亚州 墨尔本 / 中国 湖南 长沙

论文:石墨烯及相关材料的分子动力学模拟

03

职业经历

莫纳什大学,澳大利亚 维多利亚州 墨尔本

高级研究员,材料科学与工程系 / 物理与天文学院

主持二维材料及计算方法学开发相关研究。

莫纳什大学,澳大利亚 维多利亚州 墨尔本

研究员,材料科学与工程系 / 物理与天文学院

指导教师: Nikhil V. MedhekarMichael S. Fuhrer

在 ARC 未来低能耗电子技术卓越中心(FLEET)支持下,从事拓扑材料研究。

澳大利亚联邦科学与工业研究组织(CSIRO),澳大利亚 维多利亚州 墨尔本

科研助理,CSIRO 矿物加工部

指导教师: Shouyi Sun

测量用于聚光太阳能发电的熔盐混合物的热物性参数。

04

论文发表

已发表 43 篇同行评审期刊论文,发表于 Materials Today Physics(影响因子 11.5)、ACS Nano(影响因子 17.1)、npj Quantum Materials(影响因子 5.7)、Journal of Physical Chemistry Letters(影响因子 5.7)、Nature Communications(影响因子 16.6)、Advanced Functional Materials(影响因子 19.0)和 Nano Letters(影响因子 10.8)等知名期刊。总引用次数:1123 · H 指数:19。

5 篇代表性论文

代表性论文 1 / 5

二维拓扑晶体绝缘体铋烯中通过调控体–边界耦合提取非常规自旋纹理

Yuefeng Yin,Chutian Wang,Michael S. Fuhrer,Nikhil V. Medhekar

Materials Today Physics, 2023, 36, 101168.

首次系统研究二维拓扑材料中体–边界耦合如何影响边缘输运,揭示了拓扑晶体绝缘体中常规与非常规螺旋态的共存。

代表性论文 2 / 5

Weyl 铁磁体 Co2MnGa 中自感应自旋–轨道力矩的巨大各向异性

Motomi Aoki,Yuefeng Yin,Simon Granville,Yao Zhang,Nikhil V. Medhekar,Livio Leiva,Ryo Ohshima,Yuichiro Ando,Masashi Shiraishi

Nano Letters, 2023, 15, 6951.

理论与实验在预言 Weyl 铁磁体 Co2MnGa 中自旋–轨道力矩各向异性上高度吻合。

代表性论文 3 / 5

面向二维銾同素异形体的局域 Wannier 函数紧束束缚模型

Qile Li,Jackson S. Smith,Yuefeng Yin,Chutian Wang,Mykhailo V. Klymenko,Jared H. Cole,Nikhil V. Medhekar

New Journal of Physics, 2021, 6, 26371.

建立了一套将第一性原理计算转化为简化、对称化紧束束缚模型的工作流程,适用于二维銾的各同素异形体。

代表性论文 4 / 5

拓扑黄铁矿型 OsX2(X = Se, Te)晶体中表面自旋流的选择性调控

Yuefeng Yin,Michael S. Fuhrer,Nikhil V. Medhekar

npj Quantum Materials, 2019, 4, 47.

首次在纯净的非磁性材料中从理论上预言各向异性表面自旋态。

代表性论文 5 / 5

分子偶极矩驱动的石墨烯上 DNA/RNA 碱基电子结构调制

Yuefeng Yin,Jiri Cervenka,Nikhil V. Medhekar

Journal of Physical Chemistry Letters, 2017, 8, 3087.

总结了博士阶段关于通过分子吸附调控石墨烯电子结构的核心成果。

全部期刊论文

43.

Engineering built-in electric fields through p-n heterojunction construction for enhanced dual-functional water electrolysis in Co2P/Fe2P systems

Ang Li,Baiyu Ren,Heng Yang,Hui Min Gu,Bao Yue Zhang,Nikhil V. Medhekar,Xinyi Hu,Hao Yu,Yinfen Cheng,Yuefeng Yin,Zhong Li,Jian Zhen Ou — Journal of Alloys and Compounds, 2026, 188405.

42.

Uncovering complex phonon interactions in Mg3Bi2-xSbx: topology and avoided crossings

Lei Chen,Yuefeng Yin,Ting Lu,Huangshui Ma,Shuxian Zhang,Xinyue Zhang,Zhiwei Chen,Siqi Lin,Siqi Huo,Shengqing Xia,Richard A. Mole,Dehong Yu,Kirrily C. Rule,Weiyao Zhao,Julie Karel,Pingan Song,John Bell,Min Hong — Nature Communications, 2026.

41.

Efficient and Robust p-Type Transistor Based on Ultrawide-Bandgap Semiconductor

Kaijian Xing,Zherui Yang,Weiyao Zhao,Yuefeng Yin,Huiping Han,Shanhu Wang,Shifan Wang,James Bullock,Alastair Stacey,James A. Belcourt,Sergey Rubanov,Hang Yin,David A. Broadway,Jean-Philippe Tetienne,Xinmao Yin,Liang Wu,Dong-Chen Qi,Michael S. Fuhrer,Qingdong Ou,Xiao Renshaw Wang — ACS Nano, 2026, 20, 7343-7354.

40.

Band Structure Engineering to Optimize Spin-Wave Propagation in Weyl ferromagnet Co2MnGa1-xGex

Jinlong Wang,Yao Zhang,Junfeng Hu,He Song,Xiaozhen Sun,Xiangrui Meng,Ziyue Xu,Yuefeng Yin,Tianyu Yang,Lutong Sheng,Jilei Chen,Song Liu,Peng Li,Peng Gao,Nikhil V. Medhekar,Dapeng Yu,Simon Granville,Haiming Yu — Advanced Materials, 2025, 37, 2505704.

39.

Edge state stabilization and control in 2D topological crystalline insulators

Chutian Wang,Yuefeng Yin,Thanh Tung Huynh,Michael S. Fuhrer,Nikhil V. Medhekar — Materials Today Physics, 2025, 59, 101897.

38.

Giant temperature-independent ultraviolet circular dichroism in Co2MnX (X = Ga, Ge) Heusler magnetic thin films

Yao Zhang,Jie Sung,Yuefeng Yin,Yu-Ying Chang,Nikhil V. Medhekar,Simon Granville,Hua-Shu Hsu — Physical Review Applied, 2025, 24, 14378.

37.

Room temperature quantum metric effect in TbMn6Sn6

Weiyao Zhao,Kaijian Xing,Yufei Zhao,Lei Chen,Min Hong,Yuefeng Yin,Yang Liu,Dang Khoa Le,Jacob Gayles,Fang Tang,Yong Fang,Binghai Yan,Julie Karel — Nature Communications, 2025, 16, 6837.

36.

Giant berry curvature in amorphous ferromagnet Co2MnGa

Weiyao Zhao,Yao Zhang,Yuefeng Yin,Kaijian Xing,Shengqiang Zhou,Abdulhakim Bake,Golrokh Akhgar,David Cortie,Lei Chen,Xiaolin Wang,Kirrily C. Rule,Nikhil V. Medhekar,Simon Granville,Julie Karel — Matter, 2025, 8, 101988.

35.

Pick-and-Place Transfer of Arbitrary-Metal Electrodes for van der Waals Device Fabrication

Kaijian Xing,Daniel McEwen,Yuefeng Yin,Weiyao Zhao,Abdulhakim Bake,David Cortie,Jingying Liu,Thi-Hai-Yen Vu,Yi-Hsun Chen,James Hone,Alastair Stacey,Mark T. Edmonds,Nikhil V. Medhekar,Kenji Watanabe,Takashi Taniguchi,Qingdong Ou,Dong-Chen Qi,Michael S. Fuhrer — ACS Nano, 2025, 19, 3579.

34.

Generic Approach to Intrinsic Magnetic Second-Order Topological Insulators via Inverted p–d Orbitals

Zhao Liu,Bing Liu,Yuefeng Yin,Nikhil V. Medhekar — Nano Letters, 2024, 24, 11295.

33.

Electrically Controlled High Sensitivity Strain Modulation in MoS2 Field‐Effect Transistors via a Piezoelectric Thin Film on Silicon Substrates

Abin Varghese,Adityanarayan H. Pandey,Pooja Sharma,Yuefeng Yin,Nikhil V. Medhekar,Saurabh Lodha — Nano Letters, 2024, 24, 8472.

32.

Electron–phonon interactions at the topological edge states in single bilayer Bi (111)

Enamul Haque,Yuefeng Yin,Nikhil V. Medhekar — Nanoscale, 2024, 16, 17442.

31.

Origin of Different Piezoelectric Responses in Elemental Sb and Bi Monolayers

Yunfei Hong,Junkai Deng,Qi Kong,Yuefeng Yin,Xiangdong Ding,Jun Sun,Jefferson Zhe Liu — Physical Review B, 2024, 109, 14980.

30.

Quasi-free-standing AA-stacked Bilayer Graphene Induced by Calcium Intercalation of the Graphene-Silicon Carbide Interface

Antonija Grubisic-Cabo,Jimmy C. Kotsakidis,Yuefeng Yin,Anton Tadich,Matthew Haldon,Sean Solari,John Riley,Eric Huwald,Kevin M. Daniels,Rachael L. Myers-Ward,Mark T. Edmonds,Nikhil V. Medhekar,D. Kurt Gaskill,Michael S. Fuhrer — Frontiers in Nanotechnology, 2024, 5, 1333127.

29.

Using Optical Spectroscopy to Probe the Impact of Atomic Disorder on the Heusler Alloy C⁢o2⁢MnGa

Ben Mallett,Yao Zhang,Catherine Pot,Kiri Van Koughnet,Blake Stanley,Robert G. Buckley,Annette Koo,Yuefeng Yin,Nikhil V. Medhekar,Simon Granville — Physical Review Materials, 2023, 7, 094203.

28.

二维拓扑晶体绝缘体铋烯中通过调控体–边界耦合提取非常规自旋纹理

Yuefeng Yin,Chutian Wang,Michael S. Fuhrer,Nikhil V. Medhekar — Materials Today Physics, 2023, 36, 101168.

27.

Weyl 铁磁体 Co2MnGa 中自感应自旋–轨道力矩的巨大各向异性

Motomi Aoki,Yuefeng Yin,Simon Granville,Yao Zhang,Nikhil V. Medhekar,Livio Leiva,Ryo Ohshima,Yuichiro Ando,Masashi Shiraishi — Nano Letters, 2023, 15, 6951.

26.

Giant Piezoresistivity in a van der Waals Material Induced by Intralayer Atomic Motions

Lingyun Tang,Zhongquan Mao,Chutian Wang,Qi Fu,Chen Wang,Yichi Zhang,Jingyi Shen,Yuefeng Yin,Bin Shen,Dayong Tan,Qian Li,Yonggang Wang,Nikhil V. Medhekar,Jie Wu,Huiqiu Yuan,Yanchun Li,Michael S. Fuhrer,Changxi Zheng — Nature Communications, 2023, 14, 1519.

25.

Wavelength-Controlled Photocurrent Polarity Switching in BP-MoS2 Heterostructure

Himani Jawa,Abin Varghese,Sayantan Ghosh,Srilagna Sahoo,Yuefeng Yin,Nikhil V. Medhekar,Saurabh Lodha — Advanced Functional Materials, 2022, 32, 2112696.

24.

Near-Infrared and Visible-Range Optoelectronics in 2D Hybrid Perovskite/Transition Metal Dichalcogenide Heterostructures

Abin Varghese,Yuefeng Yin,Mingchao Wang,Saurabh Lodha,Nikhil V. Medhekar — Advanced Materials Interfaces, 2022, 9, 2102174.

23.

Polarity-Tunable Photocurrent through Band Alignment Engineering in a High-Speed WSe2/SnSe2 Diode with Large Negative Responsivity

Sayantan Ghosh,Abin Varghese,Himani Jawa,Yuefeng Yin,Nikhil V. Medhekar,Saurabh Lodha — ACS Nano, 2022, 16, 4578.

22.

Proposal for a Negative Capacitance Topological Quantum Field-Effect Transistor

Michael S. Fuhrer,Mark T. Edmonds,Dimitrie Culcer,Muhammad Nadeem,Xiaolin Wang,Nikhil V. Medhekar,Yuefeng Yin,Jared H. Cole — 2021 IEEE International Electron Devices Meeting (IEDM), 2021, 38, 2.1.

21.

Manifestation of Strongly Correlated Electrons in a 2D Kagome Metal–Organic Framework

Dhaneesh Kumar,Jack Hellerstedt,Bernard Field,Benjamin Lowe,Yuefeng Yin,Nikhil V. Medhekar,Agustin Schiffrin — Advanced Functional Materials, 2021, 31, 2106474.

20.

Crossover from 2D Ferromagnetic Insulator to Wide Band Gap Quantum Anomalous Hall Insulator in Ultrathin MnBi2Te4

Chi Xuan Trang,Qile Li,Yuefeng Yin,Jinwoong Hwang,Golrokh Akhgar,Iolanda Di Bernardo,Antonija Grubišić-Čabo,Anton Tadich,Michael S. Fuhrer,Sung-Kwan Mo,Nikhil V. Medhekar,Mark T. Edmonds — ACS Nano, 2021, 15, 13444.

19.

面向二维銾同素异形体的局域 Wannier 函数紧束束缚模型

Qile Li,Jackson S. Smith,Yuefeng Yin,Chutian Wang,Mykhailo V. Klymenko,Jared H. Cole,Nikhil V. Medhekar — New Journal of Physics, 2021, 6, 26371.

18.

Magnesium-Intercalated Graphene on SiC: Highly n-doped Air-Stable Bilayer Graphene at Extreme Displacement Fields

Antonija Grubišić-Čabo,Jimmy C. Kotsakidis,Yuefeng Yin,Anton Tadich,Matthew Haldon,Sean Solari,Iolanda Di Bernardo,Kevin M. Daniels,John Riley,Eric Huwald,Mark T. Edmonds,Rachael Myers-Ward,Nikhil V. Medhekar,D Kurt Gaskill,Michael S. Fuhrer — Applied Surface Science, 2021, 541, 148612.

17.

Probing the Dynamic Structural Changes of DNA Using Ultrafast Laser Pulse in Graphene‐Based Optofluidic Device

Bannur N. Shivananju,Lu Zhou,Yuefeng Yin,Wenzhi Yu,Babar Shabbir,Haoran Mu,Xiaozhi Bao,Yiqiu Zhang,Sun Tian,Qingdong Ou,Shaojuan Li,Mohammad M. Hossain,Yupeng Zhang,Huaiyu Shao,Guichuan Xing,Nikhil V. Medhekar,Chang‐Ming Li,Jian Liu,Qiaoliang Bao — InfoMat, 2021, 3, 316.

16.

Berry Curvature Origin of the Thickness-Dependent Anomalous Hall Effect in a Ferromagnetic Weyl Semimetal

Yao Zhang,Yuefeng Yin,Guy Dubuis,Tane Butler,Nikhil V. Medhekar,Simon Granville — npj Quantum Materials, 2021, 6, 17.

15.

First-Principles Study of Mechanical and Optical Properties for ZnS1− xOx Alloying Compounds

Junfu Qi,Yuefeng Yin,Xiangdong Ding,Jun Sun,Junkai Deng — Materials Today Communications, 2020, 24, 101259.

14.

Intrinsic-Strain-Induced Curling of Free-Standing Two-Dimensional Janus MoSSe Quantum Dots

Han Ye,Yunzhen Zhang,Anran Wei,Delong Han,Yumin Liu,Wenjun Liu,Yuefeng Yin,Mingchao Wang — Applied Surface Science, 2020, 519, 146251.

13.

Freestanding n-Doped Graphene via Intercalation of Calcium and Magnesium into the Buffer Layer–SiC(0001) Interface

Jimmy C. Kotsakidis,Antonija Grubišić-Čabo,Yuefeng Yin,Anton Tadich,Rachael L. Myers-Ward,Matthew DeJarld,Shojan P. Pavunny,Marc Currie,Kevin M. Daniels,Chang Liu,Mark T. Edmonds,Nikhil V. Medhekar,D Kurt Gaskill,Amadeo L. Vázquez de Parga,Michael S. Fuhrer — Chemistry of Materials, 2020, 32, 6464.

12.

Chemical Switching of Low-Loss Phonon Polaritons in α-MoO3 by Hydrogen Intercalation

Yingjie Wu,Qingdong Ou,Yuefeng Yin,Yun Li,Weiliang Ma,Wenzhi Yu,Guanyu Liu,Xiaoqiang Cui,Xiaozhi Bao,Jiahua Duan,Gonzalo Álvarez-Pérez,Zhigao Dai,Babar Shabbir,Nikhil Medhekar,Xiangping Li,Chang-Ming Li,Pablo Alonso-González,Qiaoliang Bao — Nature Communications, 2020, 11, 2646.

11.

Electronic Band Structure of In-Plane Ferroelectric van der Waals β′-In2Se3

James L. Collins,Chutian Wang,Anton Tadich,Yuefeng Yin,Changxi Zheng,Jack Hellerstedt,Antonija Grubisic-Cabo,Shujie Tang,Sung-Kwan Mo,John Riley,Eric Huwald,Nikhil V. Medhekar,Michael S. Fuhrer,Mark T. Edmonds — ACS Applied Electronic Materials, 2020, 2, 213.

10.

拓扑黄铁矿型 OsX2(X = Se, Te)晶体中表面自旋流的选择性调控

Yuefeng Yin,Michael S. Fuhrer,Nikhil V. Medhekar — npj Quantum Materials, 2019, 4, 47.

9.

Designing Optoelectronic Properties by On-Surface Synthesis: Formation and Electronic Structure of an Iron–Terpyridine Macromolecular Complex

Dhaneesh Kumar,Cornelius Krull,Yuefeng Yin,Nikhil V. Medhekar,Agustin Schiffrin — ACS Nano, 2019, 13, 11882.

8.

Designing Optoelectronic Properties by On-Surface Synthesis: Formation and Electronic Structure of an Iron–Terpyridine Macromolecular Complex

Farjana Haque,Ali Zavabeti,Bao Yue Zhang,Robi S. Datta,Yuefeng Yin,Zhifeng Yi,Yichao Wang,Nasir Mahmood,Naresh Pillai,Nitu Syed,Hareem Khan,Azmira Jannat,Ning Wang,Nikhil V. Medhekar,Kourosh Kalantar-zadeh,Jian Zhen Ou — Journal of Materials Chemistry A, 2019, 7, 257.

7.

Designing Optoelectronic Properties by On-Surface Synthesis: Formation and Electronic Structure of an Iron–Terpyridine Macromolecular Complex

Agustin Schiffrin,Martina Capsoni,Gelareh Farahi,Chen-Guang Wang,Cornelius Krull,Marina Castelli,Tanya Roussy,Katherine A. Cochrane,Yuefeng Yin,Nikhil V. Medhekar,Michael Fuhrer,Adam Q. Shaw,Wei Ji,Sarah A. Burke — ACS Nano, 2018, 12, 6545.

6.

The Edge Stresses and Phase Transitions for Magnetic BN Zigzag Nanoribbons

Junkai Deng,Yuefeng Yin,Huanhuan Niu,Xiangdong Ding,Jun Sun,Nikhil V. Medhekar — Scientific Reports, 2017, 7, 7855.

5.

分子偶极矩驱动的石墨烯上 DNA/RNA 碱基电子结构调制

Yuefeng Yin,Jiri Cervenka,Nikhil V. Medhekar — Journal of Physical Chemistry Letters, 2017, 8, 3087.

4.

Harnessing Lewis Acidic Open Metal Sites of Metal–Organic Frameworks: the Foremost Route to Achieve Highly Selective Benzene Sorption Over Cyclohexane

Soumya Mukherjee,Biplab Manna,Aamod V. Desai,Yuefeng Yin,Rajamani Krishna,Ravichandar Babarao,Sujit K. Ghosh — Chemical Communications, 2016, 52, 8215.

3.

The Formation Mechanism of Janus Nanostructures in One-Pot Reactions: the Case of Ag–Ag8GeS6

Joel Van Embden,Laure Bourgeois,Enrico Della Gaspera,Lynne Waddington,Yuefeng Yin,Nikhil V. Medhekar,Jacek J. Jasieniak,Anthony SR. Chesman — Journal of Materials Chemistry A, 2016, 4, 7060.

2.

Tunable Hybridization Between Electronic States of Graphene and Physisorbed Hexacene

Yuefeng Yin,Jiri Cervenka,Nikhil V. Medhekar — Journal of Physical Chemistry C, 2015, 119, 19526.

1.

Graphene Field Effect Transistor as a Probe of Electronic Structure and Charge Transfer at Organic Molecule–Graphene Interfaces

Jiri Cervenka,Akin Budi,Nikolai Dontschuk,Alastair Stacey,Anton Tadich,Kevin J. Rietwyk,Alex Schenk,Mark T. Edmonds,Yuefeng Yin,Nikhil V. Medhekar,Martin Kalbac,Chris I. Pakes — Nanoscale, 2015, 7, 1471.

05

会议论文

6.

Tuning the Edge States of Bismuthene via Substrate Effects

Chutian Wang,Yuefeng Yin,Michael S. Fuhrer,Nikhil V. Medhekar — American Physical Socienty (APS) March Meeting, Mar. 2021.

5.

Tight-Binding Models for Two-Dimensional Allotropes of Bismuth-based on Localized Wannier Functions

Qile Li,Jackson Smith,Yuefeng Yin,Chutian Wang,Mykhailo Klymenko,Jared Cole,Nikhil V. Medhekar — American Physical Socienty (APS) March Meeting, Mar. 2021.

4.

Tuning the Surface Spin Textures of Topological Materials

Yuefeng Yin,Michael S. Fuhrer,Nikhil V. Medhekar — American Physical Socienty (APS) March Meeting, Mar. 2021.

3.

Enhancing Electronic Fingerprints of Physisorbed Molecules of Graphene

Yuefeng Yin4th International Conference on Two-Dimensional Materials (ICON-2DMAT 2018), Dec. 2018.

2.

Exploring and Predicting New Topological Electronic Materials Based on First Principles Calculations

Yuefeng YinFLEET Inaugural Annual Workshop, Dec. 2017.

1.

Tunable Hybridisation Between the Electronic States of Graphene and Physisorbed Molecules

Yuefeng YinMolecular Modelling 2014, Jul. 2014.

06

科研资助

2026 — 2027

从实验室到量产:推动新型低能耗晶体管走向规模化制造

澳大利亚经济加速器(AEA)Ignite 计划 第二轮

共同主持人: Prof. Michael S. Fuhrer, Monash University, Australia. Prof. Nikhil V. Medhekar, Monash University, Australia.

65 万澳元(其中 AEA 资助 50 万澳元,合作伙伴配套 15 万澳元)

2026

衬底上特定二维拓扑材料的研究

产业合作资助

共同主持人: Prof. Michael S. Fuhrer, Monash University, Australia. Prof. Nikhil V. Medhekar, Monash University, Australia.

20 万澳元(由合作产业伙伴提供)

2023 — Current

材料缺陷建模新方法的探索

NCI Adapter 计划 / NCI-Monash 计算资源计划

300 万 SU CPU 机时以上(约合 20 万澳元的研究经费)

2025 — Current

半导体—金属 / 半导体接触界面相互作用研究

Pawsey 快速通道计划

50 万 SU CPU 机时(约合 3 万澳元的研究经费)

2020 — 2023

各向异性 Weyl 半金属 Co2MnGa 的拓扑性质研究

FLEET-MacDiarmid 合作研究基金

共同主持人: Dr. Simon Granville, Victoria University of Wellington, New Zealand.

10,750 澳元,用于赴新西兰惠灵顿维多利亚大学开展短期合作访问。

07

教学与指导

教学经历

讲师

莫纳什大学 / 中南大学,澳大利亚 维多利亚州 墨尔本 / 中国 湖南 长沙

计算材料科学、材料表征以及材料科学基础

研究生助教

莫纳什大学,澳大利亚 维多利亚州 墨尔本

材料建模与材料表征

博士生指导

08

媒体报道