主要论著 | [19] Tongwei Han*, Suncheng Zhang, Xiaoyan Zhang, Fabrizio Scarpa*, Generating auxeticity in graphene Kirigami with rectangular and rhomboidal perforations, Materials Today Physics, 2025, 55: 101756. [18] Tongwei Han*, Suncheng Zhang, Xiaoyan Zhang, Fabrizio Scarpa*, Kirigami graphene with architected defects: auxeticity, mechanics and benchmark, European Journal of Mechanics / A Solids, 2025, 114: 105768. [17] Tongwei Han*, Suncheng Zhang, Xiaoyan Zhang, Fabrizio Scarpa*, Programmable negative Poisson's ratio in graphene metamaterials via sinusoidal Kirigami, Diamond and Related Materials, 2025, Under Review. [16] Tongwei Han*, Suncheng Zhang, Xiaoyan Zhang, Fabrizio Scarpa*, Data-driven inverse design of graphene Kirigami with negative Poisson's ratio using machine learning and genetic algorithms, Diamond and Related Materials, 2025, Under Review. [15] Yantao Yang, Tongwei Han*, Yunyi Sun, Xuanzheng Li, Xiaoyan Zhang*, Mechanical behavior of planar β-borophene under different loadings: Insights from molecular dynamics simulations, Computational Materials Science, 2025, 249: 113687. [14] 张孙成, 韩同伟*, 王如盟, 杨艳陶, 张小燕, 基于机器学习的菱形穿孔石墨烯负泊松比效应预测与优化, 物理学报, 2025, 74(9): 096201. [13] 韩同伟*, 李选政, 赵泽若, 顾叶彤, 马川, 张小燕, 不同荷载作用下二维硼烯的力学性能及变形破坏机理, 物理学报, 2024, 73(11): 116201. [12] Tongwei Han*, Ren Li, Xiaoyan Zhang, Fabrizio Scarpa*, Free standing nanoindentation of penta-graphene via molecular dynamics: Mechanics and deformation mechanisms, Mechanics of Materials, 2023, 180: 104628. [11] Tongwei Han*, Xueyi Wang, Xiaoyan Zhang, Fabrizio Scarpa*, Chun Tang, Mechanics of penta-graphene with vacancy defects under large amplitude tensile and shear loading. Nanotechnology, 2021, 32(27): 275706. [10] Tongwei Han*, Jabin Dong, Xueyi Wang, Xiaoyan Zhang, Yikai Lv, Fabrizio Scarpa*, Effects of hydrogenation on the tensile and shear mechanical properties of defective penta-graphene, Nanotechnology, 2021, 32(49): 495706 [9] 韩同伟*, 李仁, 操淑敏, 张小燕, 官能化对五边形石墨烯力学性能的影响及机理研究,物理学报, 2021, 70(22): 226201. [8] Tongwei Han*, Tao Jiang, Xueyi Wang, Panpan Li, Linru Qiao, Xiaoyan Zhang*. Tuning the mechanical properties of nanoporous graphene: a molecular dynamics study. Materials Research Express, 2019, 6: 095619. [7] Tongwei Han*, Shumin Cao, Xueyi Wang, Ziyiyang Xue, Xiaoyan Zhang*, Mechanical behaviours of penta-graphene and effects of hydrogenation. Materials Research Express, 2019, 6: 085612. [6] Tongwei Han*, Fabrizio Scarpa*, Neil L. Allan, Super stretchable hexagonal boron nitride Kirigami, Thin Solid Films, 2017,632: 35-43. [5] 韩同伟*, 李攀攀, 石墨烯剪纸的大变形拉伸力学行为研究,物理学报, 2017, 66(6): 066201. [4] Tongwei Han, Ying Luo, Chengyuan Wang*, Effects of SI, N and B doping on the mechanical properties of graphene sheets, Acta Mechanica Solida Sinica, 2015, 28(6): 618-625. [3] Tongwei Han, Ying Luo, Chengyuan Wang*, Effects of temperature and strain rate on the mechanical properties of hexagonal boron nitride nanosheets, Journal of Physics D: Applied Physics, 2014, 47(2): 025303. [2] 韩同伟, 贺鹏飞*, 骆英, 张小燕, 石墨烯力学性能研究进展, 力学进展, 2011, 41(3): 279-293. [1] 韩同伟, 贺鹏飞*, 石墨烯弛豫性能的分子动力学模拟, 物理学报, 2010, 59(5): 3408-3413. |
发明专利 | 1、一种内径可控、管壁厚度可调的聚膦腈碳微纳米管电极材料的制备方法(CN202210526688.1), 韩同伟(3/6), 发明专利, 202205, 公开 2、一种二硫化钼/聚膦腈/四氧化三铁电极材料的制备方法(ZL201910859213.2), 韩同伟(3/5), 发明专利, 202108, 授权 3、一种黑磷/聚膦腈复合纳米材料的制备方法(CN111087826A), 韩同伟(4/6), 发明专利, 202005, 公开 4、一种纳米线/聚合物/纳米颗粒夹心复合材料的制备方法(CN107118563A), 韩同伟(3/6), 发明专利, 201709, 公开 5、一种磁性聚膦腈纳米线的制备方法(ZL201410313575.9), 韩同伟(2/4), 发明专利, 201609, 授权 6、一种石墨烯聚膦腈纳米复合材料的制备方法(ZL201110025542.0.), 韩同伟(2/4), 发明专利, 201301, 授权 7、顺磁性聚膦腈纳米管磁共振成像对比剂的制备方法(ZL201010229003.4), 韩同伟(5/5), 发明专利, 201207, 授权 8、磁性水溶性壳聚糖磁共振成像对比剂的制备方法(ZL201010229022.7), 韩同伟(4/4), 发明专利, 201205, 授权 |