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姓名:
潘斗兴
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性别:
男
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职称:
副教授
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所在系所:
应用力学系
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所在梯队:
弹性波与计算力学梯队
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办公地点:
理化楼206
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电子邮件:
B2115459@ustb.edu.cn
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本科生课程:
工程力学AI/E
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研究生课程:
多尺度计算与建模,低维体系物理力学
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研究领域:
2015年6月毕业于中科院力学所获理学博士学位(固体力学)
2011年6月毕业于西南交通大学获工学硕士学位(固体力学)
2008年6月毕业于安徽建筑大学获工学学士学位(土木工程)
教育经历
2021.03-至今 必赢nn699net副教授/硕士生导师
2019.06-2021.01 中科院北京纳米能源与系统研究所副研究员
2017.09-2019.05 中科院合肥物质科学研究院助理研究员
2015.07-2017.08 北京理工大学物理学院博士后
2011.07-2012.08 中科院力学所研究实习员
工作经历
主持项目:
国家自然科学基金青年科学基金项目,11802306,2019.01-2021.12,22万元,已结题
学术论文:
1. Zhao R.T., and Pan D.X.* Thermal conductivity of two stable bilayer phosphorene stackings: A computation study[J]. J. Appl. Phys., 2022, 131(7): 075101.
2. Pan, D.X. Electronic dispersions of a stable twisted bilayer phosphorene in 2O-tαP phase. J. Appl. Phys., 2021, 129(5), 055101.
3. Alidoust M., Halterman K., Pan D.X., Willatzen M., and Akola J. Strain-engineered widely tunable perfect absorption angle in black phosphorus from first principles. Phys. Rev. B, 2020,102(11), 115307.
4. Pan D.X., Liu C.S., Liu G.-B., Feng S., and Yao Y.G.* Physical Fingerprints of the 2O-tαP Phase in Phosphorene Stacking. J. Phys. Chem. Lett. 2019,10,11,3190-3196.
5. Gong L., Pan D.X., and Wang X.J.* Finite element modeling of the viscoelastic contact for a composite micropillar. Mech. Adv. Mater. & Struct., 2019, 1-13.
6. Pan D.X., Wang C., and Wang X.J.* Graphene Foam: Hole-Flake Network for Uniaxial Supercompression and Recovery Behavior. ACS Nano, 2018, 12(11), 11491-11502.
7. Wang C, Pan D.X., and Chen S.H.* Energy Dissipative Mechanism of Graphene Foam Matrials. Carbon, 2018,132, 641-650.
8. Chen Z., Wang J.R., Pan D.X., Wang Y.*, Noetzel R., Li H., Xie P., Pei W.L., Umar A., Jiang L.*, Li N., de Rooij N.F., and Zhou G.F.* Mimicking Dog Nose: Scrolling Graphene Nanosheets. ACS Nano, 2018,12 (3),2521-2530.
9. Pan D.X., Wang T.-C.*, Xiao W.D., Hu D. M., and Yao Y. G.* Simulations of twisted bilayer orthorhombic Black Phosphorus. Phys. Rev. B (Rapid communication), 2017, 96, 041411.
10. Pan D.X., Li Y., Wang T.-C.*, and Guo W. L.* Bending-induced extension in two-dimensional crystals, Acta Mech. Sin., 2017,33, 71-76.
11. Pan D.X., Wang C., Wang T.-C.*, and Yao Y. G.* Graphene foam:uniaxial tension behavior and fracture mode based on a mesoscopic model. ACS Nano, 2017, 11, 8988−8997.
12. Pan D.X., Wang T.-C.*, Wang C., Guo W., and Yao Y. G.* Self-assembled chiral phosphorus nanotubes from phosphorene: a molecular dynamics study. RSC Adv., 2017, 7, 24647-24651.
13. Pan D.X., Wang T.-C., and Guo W.L.* Bending-induced phase transition in monolayer black phosphorus, Chin. Phys. B, 2015,24, 086401-6.
14. Liu X.F., Pan D.X., Hong Y.Z., and Guo W. L.* Bending poisson effect in two-dimensional crystals. Phys. Rev. Lett., 2014,112, 205502.
15. Pan, D.X., Kang, G.*, and Jiang, H., Viscoelastic constitutive model for uniaxial time-dependent ratcheting of polyetherimide polymer. Polym. Eng. Sci., 2012, 52,1874-1881.
16. Pan, D.X., Kang, G. Z.*, Zhu, Z. W., and Liu, Y. J. Experimental study on uniaxial time-dependent ratcheting of a polyetherimide polymer. J Zhejiang Univ-Sci A (Appl. Phys. & Eng), 2010, 11,804-810.
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