平博

刘美风博士

新闻源头:平博宣告时间:2018-09-13欣赏次数:467

 

个人学术简介:

刘美风,南京大学博士,师从南京大学物理学院、固体微结构国家重点实验室长江学者特聘风教学刘俊明。弛缓从事新型多铁性氧化物质料合成与磁电耦合增强钻研以及 3d-4d过渡金属氧化物的磁性以及输运行为钻研。已经在Physical Review B, Applied Physics Letters, Journal of Applied Physics等有名海外刊物上发表论文30余篇。主持国家做作基金青年样式,湖北省辅导厅青年样式以及南京大学固体微结构国家重点实验室凋谢课题各1项。

辅导事变履历:

2016.06-至今平博后退先辈质料钻研院西席

2011.09-2016.06   南京大学物理学院凝固态物理业余博士学位

2007.09-2011.06   平博物电学院物理学业余学士学位

钻研范畴:

有机以及有机铁电质料的制备,表征,介电,铁电,压电与阻抗钻研

新型多铁性氧化物质料合成与磁电耦合增强钻研

3d-4d过渡金属氧化物的磁性以及输运行为钻研

主持的科研样式:

1.      新型多铁性子料(1-x) AR2Fe2O7 - x A3Sn2O7的磁电功能钻研(2018.01-2020.12, 11704109),国家做作迷信基金青年样式,25万,主持。

2.      层状钙钛矿氧化物Can+1MnnO3n+1的铁电性以及电控磁性钻研,(2017.01-2018.12, Q20172501),湖北省辅导厅青年样式,2万,主持。

3.      层状钙钛矿氧化物AR2B2O7的磁电功能钻研,(2017.10-2019.06, M30010),南京大学固体微结构国家重点实验室凋谢课题,3万,主持。

近五年发表文章目录:

1.     X. Li, M. F. Liu(通讯作者), Y. Wang, L. M. Tian, R. Shi, L. Yang, Q. Y. Pan, J. J. Han, B. Xie, N. Zhao, X. Z. Wang, S. Z. Li, L. Lin, Z. B. Yan, and J. M. Liu, Magnetoelectric mutual-control in collinear antiferromagnetic NdCrTiO5, Applied Physics Letters 113, XXX. (2018) (已经吸取)

2.     M. F. Liu, Y. Zhang, L.-F. Lin, L. Lin, S. W. Yang, X. Li, Y. Wang, S. Z. Li, Z. B. Yan, X. Z. Wang, X.-G. Li, S. Dong, and J.-M. Liu, Direct observation of ferroelectricity in Ca3Mn2O7 and its prominent light absorption. Applied Physics Letters 113, 022902. (2018) (该文章被美国运用物理学会AIP网站专题报导)

3.     Huang Yu-Tian, Wang Yu, Zhu Min-Min,  Lü Ting, Yang Hong-Chun, Li Xiang, Wang Xiu-Zhang, Liu Mei-Feng(通讯作者), Li Shao-Zhen, (1 - x)Sr3Sn2O7 + xCa3Mn2O7 ceramics and their photo-electric characteristic. Acta Phys. Sin. 67, 154203, (2018)

4.     M. F. Liu, L. F. Lin, Y. Zhang, S. Z. Li, Q. Z. Huang, V. O. Garlea, T. Zou, Y. L. Xie, Y. Wang, C. L. Lu, L. Yang, Z. B. Yan, X. Z. Wang, S. Dong, and J.-M. Liu Cycloidal magnetism driven ferroelectricity in double tungstate LiFe(WO4)2. Phys. Rev. B 95, 195134 (2017).

5.     M. F. Liu, H. M. Zhang, X. Huang, C. Y. Ma, S. Dong, J.-M. Liu, Two-Step Antiferromagnetic Transitions and Ferroelectricity in Spin-1 Triangular-Lattice Antiferromagnetic Sr3NiTa2O9. Inorg. Chem. 55, 2709-2716 (2016).

6.     Y. L. Wang*, M. F. Liu*(配合一作), R. Liu, Y. L. Xie, X. Li, Z. B. Yan, and J. –M. Liu, High stability of electro-transport and magnetism against the A-site cation disorder in SrRuO3. Sci. Rep. 06, 27840 (2016)

7.     M. F. Liu, Z. Z. Du, Y. L. Xie, X. Li, Z. B. Yan, J. M. Liu, Unusual ferromagnetism enhancement in ferromagnetically optimal manganite La0.7yCa0.3+yMn1yRuyO3 (0≤y<0.3): the role of Mn-Ru t2g super-exchange. Sci. Rep. 5, 9922 (2015).

8.     Y. L. Wang*,M. F. Liu*(配合一作), Y. L. Xie, Z. B. Yan, S. Dong, J.-M. Liu, Manipulating the ferromagnetism in narrow-bandwidth Pr1-xCaxMnO3 (0≤x≤0.6) by means of the Mn-Ru t2g ferromagnetic super-exchanges. J. Appl. Phys. 118, 123901 (2015). (*contributed equally to this work)

9.     M. F. Liu, Z. Z. Du, H. M. Liu, X. Li, Z. B. Yan, S. Dong, J.-M. Liu, Enhanced ferromagnetism, metal-insulator transition, and large magnetoresistance in La1xCaxMn1xRuxO3 free of eg-orbital double-exchange. J. Appl. Phys. 115, 123904 (2014).

10. H. W. Yu, M. F. Liu, X. Li, L. Li, L. Lin, Z. B. Yan, J.-M. Liu, Stabilized helical spin order and multiferroic phase coexistence in MnWO4: Consequence of 4d Ru substitution of Mn. Phys. Rev. B 87, 104404 (2013).

 

 

 

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