姓名:刘盼 性别: 女 职称: 讲师
职务: 学历: 博士 电子邮件: panliu@hbu.edu.cn

通讯地址: 河北省保定市莲池区七一东路2666号
准二维功能电子材料的理论计算;机器学习预测低维材料性质
1. 河北省自然科学青年基金,过渡金属元素掺杂调控二维MX3原子孔材料的电子结构和自旋极化性质研究, 编号:A2021201048 起止时间:2021-01 至 2023-12 总经费:4万
2. 河北大学,低维MXn材料在电子器件中应用的研究,编号 521000981418,2020.09-2023.09,总经费 10万
1. P. Liu, M. Wu, L. Li, X. Luo, Y. Cheng, H. Dong, H. Chen, W. Wang, H. Liu, W.-H. Wang, F. Lu and K. Cho,Ideal two-dimensional molecular sieve for gas separation: metal trihalides MX3 with precise atomic pores. J. Membr. Sci., 2020, 602, 117786.
2. P. Liu, M. Wu, H. Liu, F. Lu, W. H. Wang and K. Cho, First principles prediction on STM tip manipulation of Ti adatom on two-dimensional monolayer YBr3. Scanning, 2019, 2019, 5434935.
3. P. Liu, X. Luo, Y. Cheng, X. W. Wang, W. Wang, H. Liu, K. Cho, W. H. Wang and F. Lu, Physical realization of 2D spin liquid state by ab initio design and strain engineering in FeX3. J. Phys.: Condens. Matter, 2018 30, 325801.
4. P. Liu, F. Lu, M. Wu, X. Luo, Y. Cheng, X. W. Wang, W. Wang, W. H. Wang, H. Liu and K. Cho, Electronic structures and band alignments of monolayer metal trihalide semiconductors MX3. J. Mater. Chem. C, 2017, 5, 9066.
5. P. Liu, W. H. Wang, W. Wang, Y. Cheng, F. Lu and H. Liu, D-Type Anti-Ferromagnetic Ground State in Ca2Mn2O5. Chin. Phys. Lett., 2017, 34(2), 027101.
6. M. Wu, P. Liu, L. Li, H. Dong, Y. Cheng, H. Chen, W. Wang, H. Liu, F., Lu, W.-H. Wang, K. Cho, Ideal two-dimensional solid electrolytes for fast ion transport: metal trihalides MX3 with intrinsic atomic pores. Nanoscale, 2020,12, 7188-7195.
7. M. Lin, P. Liu, M. Wu, Y. Cheng, H. Liu, K. Cho, W. H. Wang and F. Lu, Two-dimensional nanoporous metal chalcogenophosphates MP2X6 with high electron mobilities. Appl. Surf. Sci., 2019, 493, 1334-1339.
8. M. Wu, P. Liu, B. Xin, L. Li, H. Dong, Y. Cheng, W. Wang, F. Lu, K. Cho, W. H. Wang and H. Liu, Improved carrier doping strategy of monolayer MoS2 through two-dimensional solid electrolyte of YBr3. Appl. Phys. Lett., 2019, 114(17), 171601.
9. F. Lu, J. Cui, P. Liu, M. Lin, Y. Cheng, H. Liu, W. Wang, K. Cho and W.-H. Wang. "High-throughput identification of one-dimensional atomic wires and first principles calculations of their electronic states." Chin. Phys. B 2021, 30(5), 057304.