潘志亮

  2024-04-09   点击:[10]


谷歌学术: 1700 Citations (h-index = 23, i10-index = 29)


· Z. Ma and Zhiliang Pan, Efficient machine learning of solute segregation energy based on physics-informed features, Scientific Reports, vol. 13, p. 11449, 2023/07/15

· S. Xue, Z. Huang, M. Yun, D. Liu, Zhiliang Pan, and D. Yang, The adsorption characteristics of MoS2–CuO heterojunction to polar gas molecules (CO, NO and NO2): A first–principle study, Applied Surface Science, vol. 610, p. 155564, 2023/02/01

· S. He, Y.-A. Shen, B. Xiong, F. Huo, J. Li, J. Ge, Zhiliang Pan, et al., Behavior of Sn-3.0Ag-0.5Cu solder/Cu fluxless soldering via Sn steaming under formic acid atmosphere, Journal of Materials Research and Technology, vol. 21, pp. 2352-2361, 2022/11/01

· P. Liang, Zhiliang Pan, L. Tang, G. Zhang, D. Yang, S. He, et al. (2022, Molecular Dynamics Simulation of Sintering Densification of Multi-Scale Silver Layer. Materials 15(6)

· Z. Yu, K. Yu, J. Wei, Q. Lu, Y. Cheng, and Zhiliang Pan, Improving electrode properties by sputtering Ge on SiO anode surface, Ceramics International, vol. 48, pp. 26784-26790, 2022/09/15

· Z. Yu, L. Zhou, Y. Cheng, K. Wei, G. Qu, N. Hussain, et al., Preset Lithium Source Electrolyte Boosts SiO Anode Performance for Lithium-Ion Batteries, ACS Sustainable Chemistry & Engineering, vol. 10, pp. 10351-10360, 2022/08/08

· Qi Zhu, Zhiliang Pan, Zhiyu Zhao, Guang Cao, Langli Luo, Chaolun Ni, Hua Wei, Ze Zhang, Frederic Sansoz, and Jiangwei Wang, Defect-driven selective metal oxidation at atomic scale, Nature Communications, vol 12, pp 558, January 2021  (共同一作,中科院1TOPIF = 14.919)

· Xing Ke, Jianchao Ye, Zhiliang Pan, Jie Geng, Matt F. Besser, Fang Liu, Dongxia Qu, Jaime Marian, Enrique Martinez, Alfredo Caro, Ryan T. Ott, Frederic Sansoz, and Y. Morris Wang, Exploring the strength limit of interface-controlled metallic nanomaterials, Nature Materials, vol 18, pp. 1207-1214, November 2019 (中科院1TOPIF = 39.286)

· Amirhossein Khalajhedayati, Zhiliang Pan, and Timothy J. Rupert, Manipulating the interfacial structure of nanomaterials to achieve a unique combination of strength and ductility, Nature Communications, vol 7, pp. 10802, Feb 2016 (中科院1TOPIF = 14.919)

· Lin Jiang, Mingyu Gong, Jian Wang, Zhiliang Pan, Xin Wang, Dalong Zhang, Yinmin Wang, Timothy Rupert, Irene J. Beyerlein, Jim Ciston, Andrew M. Minor, Mingjie Xu, Xiaoqing Pan, Subhash Mahajan, Enrique J. Lavernia, Julie M. Schoenung, Visualization and Validation of Twin Nucleation and Early-stage Growth in Magnesium, Nature Communications, vol 13(1), pp 20, January 2022. (中科院1TOPIF = 14.919)

· Pulkit Garg, Zhiliang Pan, Vladyslav Turlo, and Timothy J. Rupert. Segregation Competition and Complexion Coexistence within a Polycrystalline Grain Boundary Network. Acta Materialia vol 218 pp. 117213, October 2021 (共同一作,中科院1TOP, IF = 8.203)

· Yan Cheng, Kun Wei, Zhaozhe Yu, Dianyuan Fan, Dong Liang Yan, Zhiliang Pan, and Bingbing Tian. Ternary Si–Sio–Al Composite Films as High-Performance Anodes for Lithium-Ion Batteries. ACS Applied Materials & Interfaces vol 13, pp. 34447-56,  July 2021 (共同通讯,中科院1TOP, IF = 8.758)

· Zhiliang Pan and Frederic Sansoz, Heterogeneous solute segregation suppresses strain localization in nanocrystalline Ag-Ni alloys, Acta Materialia, vol. 200, pp. 91-100, November 2020. (中科院1TOP, IF = 8.203)

· Zhiliang Pan and Timothy J. Rupert, Amorphous intergranular films as toughening structural features, Acta Materialia, vol 89, pp. 205-214, May 2015 (中科院1TOP, IF = 8.203)

· Zhiliang Pan, Weihua Yin, Suveen N. Mathaudhu, Laszlo J. Kecskes, K. T. Hartwig, and Q. Wei, Microstructural Evolution and Mechanical Properties of Niobium Processed by Equal Channel Angular Extrusion up to 24 Passes, Acta Materialia, vol. 60, pp. 2310-2323, March 2012 (中科院1TOP, IF = 8.203)

· Zhiliang Pan, Yulong Li, and Q. Wei, Tensile properties of nanocrystalline tantalum from molecular dynamics simulations, Acta Materialia, vol. 56, pp. 3470-3480, August 2008 (中科院1TOP, IF = 8.203)

· Zhiliang Pan and Timothy J. Rupert, Effect of grain boundary character on segregation-induced structural transitions, Physical Review B, vol 93, pp. 134113, April 2016 (中科院2TOP, IF = 3.795)

· Zhiliang Pan and Timothy J. Rupert, Formation of ordered and disordered interfacial films in immiscible metal alloys, Scripta Materialia, vol 130, pp. 91-95, March 2017 (中科院2TOP, IF =4.150)

· Zhiliang Pan, Yazhou Guo, S. N. Mathaudhu, Laszlo J. Kecskes, K. T. Hartwig, and Q. Wei, Quasi-static and dynamic mechanical properties of commercial-purity tungsten processed by ECAE at low temperatures, Journal of Materials Science, vol. 43, pp. 7379-7384, December 2008 (中科院2TOP, IF =3.011)

· Zhiliang Pan and Timothy J. Rupert, Spatial variation of short-range order in amorphous intergranular complexions, Computational Materials Science, vol 131, pp. 62-68, April 2017 (中科院3, IF = 2.489)

· Zhiliang Pan, Laszlo J. Kecskes, and Qiuming Wei, The nature behind the preferentially embrittling effect of impurities on the ductility of tungsten, Computational Materials Science, vol. 93, pp. 104-111, October 2014 (中科院3, IF = 2.489)

· Zhiliang Pan and Timothy J. Rupert, Damage nucleation from repeated dislocation absorption at a grain boundary, Computational Materials Science, vol. 93, pp. 206-209, October 2014 (中科院3, IF = 2.489)

· Zhiliang Pan, Valery Borovikoy, Mikhail Mendelev, and Frederic Sansoz, Development of a semi-empirical potential for simulation of Ni solutes segregation into grain boundaries in Ag, Modelling and Simulation in Materials Science and Engineering, vol 26, pp 075004, September 2018 (Featured on the journal cover) (中科院3, IF =1.837)

· Zhiliang Pan and Timothy J. Rupert, Mechanisms of near-surface structural evolution in nanocrystalline materials during sliding contact, Physical Review Materials, vol 1, pp 043602, September 2017. (中科院3, IF =2.926)

· Q. Wei, Zhiliang Pan, Xiaolei Wu, B. E. Schuster, Laszlo J. Kecskes, and R. Z. Valiev, Microstructure and mechanical properties at different length scales and strain rates of nanocrystalline tantalum produced by high-pressure torsion, Acta Materialia, vol. 59, pp. 2423-2436, April 2011 (中科院1TOP, IF = 8.203)

· Silu Liu, Zhiliang Pan, Yonghao Zhao, Troy Topping, Ruslan Z. Valiev, Xiaozhou Liao, Enrique J. Lavernia, Yuantian Zhu, and Qiuming Wei, Effect of strain rate on the mechanical properties of a gum metal with various microstructures, Acta Materialia, vol 132, pp. 193-208, June 2017 (中科院1TOP, IF = 8.203)

· Jason Panzarino, Zhiliang Pan, Timothy J. Rupert, Plasticity-induced restructuring of a nanocrystalline grain boundary network, Acta Materialia, vol 120, pp. 1, Nov 2016 (中科院1TOP, IF = 8.203)

· K.W.K. Leung, Zhiliang Pan, and D.H. Warner, Atomistic-based predictions of crack tip behavior in silicon carbide across a range of temperatures and strain rates, Acta Materialia, vol. 77, pp. 324-334, September 2014 (中科院1TOP, IF = 8.203)

· KWK Leung, Zhiliang Pan, and DH Warner, Kohn-Sham density functional theory prediction of fracture in silicon carbide under mixed mode loading, Modelling and Simulation in Materials Science and Engineering, vol 24, pp. 035004, Feb 2016 (中科院3, IF =1.837)

· Zaiwang Huang, Zhiliang Pan, Haoze Li, Qiuming Wei, and Xiaodong Li, Hidden energy dissipation mechanism in nacre, Journal of Materials Research, vol. 29, pp. 1573-1578, July 2014 (中科院4, IF =1.717)

· Silu Liu, Yazhou Guo, Zhiliang Pan, X.Z. Liao, E.J. Lavernia, Y.T. Zhu, Q.M. Wei, Yonghao Zhao, Microstructural softening induced adiabatic shear banding in Ti-23Nb-0.7Ta-2Zr-O gum metal, Journal of Materials Science & Technology, vol 54, pp. 31-39, October 2020 (中科院1TOP, IF = 6.155)

· Jialin Liu, Zaiwang Huang, Zhiliang Pan, Qiuming Wei, Xiaodong Li, Yue Qi, Atomistic origin of deformation twinning in biomineral aragonite, Physical Review Letters, vol 118, pp. 105501, March 2017 (中科院1TOP, IF = 8.843)

· W.H. Yin, F. Xu, O. Ertorer, Zhiliang Pan, X.Y. Zhang, L.J. Kecskes, E.J. Lavernia, and Q. Wei, Mechanical behavior of microstructure engineered multi-length-scale titanium over a wide range of strain rates, Acta Materialia, vol. 61, pp. 3781-3798, June 2013 (中科院1TOP, IF = 8.203)

· Y.Z. Guo, N.A. Behm, J.P. Ligda, Y.L. Li, Zhiliang Pan, Z. Horita, and Q. Wei, Critical issues related to instrumented indentation on non-uniform materials: Application to niobium subjected to high pressure torsion, Materials Science and Engineering: A, vol. 586, pp. 149-159, December 2013 (中科院2TOP, IF = 3.530)

· B.E. Schuster, J.P. Ligda, Zhiliang Pan, and Q. Wei, Nanocrystalline refractory metals for extreme condition applications, JOM, vol. 63, pp. 27-31, December 2011 (中科院3, IF = 2.103)

· Zaiwang Huang, Haoze Li, Zhiliang Pan, Qiuming Wei, and Xiaodong Li, Uncovering high-strain rate protection mechanism in nacre, Scientific Reports, 1, 148, November 2011 (中科院3, IF = 4.131)

· Guo Yazhou, Yulong Li, Zhiliang Pan, Fenghua Zhou, and Q. Wei, A numerical study of microstructure effect on adiabatic shear instability: Application to nanostructured/ultrafine grained materials, Mechanics of Materials, vol. 42, pp. 1020-1029, November 2010 (中科院3, IF = 2.769)


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