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宋爱民
2016-06-14 16:54   审核人:

 

宋爱民,男,196711月出生于山东省济南市。1989年毕业于山东大学物理系。硕士博士阶段师从中科院半导体所郑厚植院士。1995年起先后赴英国格拉斯哥大学、德国慕尼黑大学和瑞典隆德大学作皇家学会博士后、洪堡基金访问学者、客座讲师。2002年在曼彻斯特大学任讲师, 2006年被破格晋升为正教授。2011年作为国家千人计划特聘教授筹建山东大学纳电子工程研究中心,并任中心主任。2006年获得英国皇家学会Brian Mercer Feasibility Award奖,2007年获得曼彻斯特大学第二届年度科学家杰出成就奖章。迄今发表了包括Nature CommunicationsPhysical Review Letters, NanoLetters100余篇学术论文,拥有二十多项国际国内专利,作为负责人主持了30多项科研项目,其中两项欧共体框架项目以他发明的电子器件为核心开展研究。曾在55个国际会议上做特邀报告,是英国IET Fellow、美国IEEE高级会员。

  

【教育经历】

1985.9-1989.6    本科   山东大学物理系,济南

1989.9-1992.6    硕士   中科院半导体所,北京

1992.9-1995.2    博士   中科院半导体所,北京

纳米电子器件
宽禁带半导体材料与器件
二维材料与器件

通信地址:山东大学中心校区知新楼C805

邮政编码:250100

联系电话:0531-88362221

电子邮箱:songam@sdu.edu.cn

 

1) Joshua Wilson, Jiawei Zhang,  Yunpeng Li,  Yiming Wang,  Qian Xin,  and Aimin Song, Inuence of interface inhomogeneities in thin-lm Schottky diodes, Applied Physics Letters, accepted.

2) Wensi Cai, Xiaochen Ma, Jiawei Zhang, and Aimin Song, Transparent Thin-Film Transistors Based on Sputtered Electric Double Layer, Materials, (accepted).

3) Zai-xing Yang, Lizhe Liu, SenPo Yip, Dapan Li, Lifan Shen, Ziyao Zhou, Ning Han, Tak Fu Hung, Edwin Yue-Bun Pun, Xinglong Wu, Aimin Song, and Johnny C. Ho, Complementary Metal Oxide Semiconductor-Compatible, High-Mobility, 111-Oriented GaSb Nanowires Enabled by Vapor–Solid–Solid Chemical Vapor Deposition, ACS Nano, 11, 4237−4246 (2017). DOI: 10.1021/acsnano.7b01217

4) Wang H., Wang Y., Zhu G., Wang Q., Xin Q., Han L., Song A., A Novel Thermally Evaporated Etching Mask for Low-Damage Dry Etching, IEEE Transactions on Nanotechnology,16(2), art. no.7839287, pp.290-295 (2017).

5) Xiaochen Ma, Jiawei Zhang, Wensi Cai, Hanbin Wang, Joshua Wilson, Qingpu Wang, Qian Xin and Aimin Song, A Sputtered Silicon Oxide Electrolyte for High-Performance Thin-Film Transistors, Scientific Reports, 7: 809 (2017) DOI:10.1038/s41598-017-00939-6.

6) Jiawei Zhang, Jia Yang, Yunpeng Li, Joshua Wilson, Xiaochen Ma, Qian Xin, and Aimin Song, High Performance Complementary Circuits Based on p SnO and n IGZO Thin-Film Transistors, Materials, 10, 319 (2017); doi:10.3390/ma10030319.

7) Letao Yang, Hanbin Wang, Xijian Zhang, Yuxiang Li, Xiufang Chen, Xiangang Xu, Xian Zhao and Aimin Song, IEEE Transactions on Electron Devices, Volume: 64, Issue: 4, 1846 – 1850 April  (2017) DOI: 10.1109/TED.2017.2665598

8) Lulu Du, He Li, Linlong Yan, Jiawei Zhang, Qian Xin, Qingpu Wang, and Aimin Song, Effects of substrate and anode metal annealing on InGaZnO Schottky diodes, Applied Physics Letters, 110, 011602 (2017) DOI: 10.1063/1.4973693

9) Yunpeng Li, Qian Xin, Lulu Du, Yunxiu Qu, He Li, Xi Kong, Qingpu Wang, and Aimin Song, Extremely Sensitive Dependence of SnOx Film Properties on Sputtering Power, Scientific Reports, 6:36183, (2016) DOI: 10.1038/srep36183

10) Li, B., Liu, H., Alimi, Y., Song, A., Simulation investigation of multiple domain observed in In0.23Ga0.77As planar Gunn diode, International Journal of Hydrogen Energy, 41 (35), pp. 15772-15776 (2016) DOI: 10.1016/j.ijhydene.2016.04.055

11) M. Zeng, X. Peng, J. Liao, G. Wang, Y. Li, J. Li, Y. Qin, J. Wilson, A. Song & S. Lin, Enhanced photoelectrochemical performance of quantum dot-sensitized TiO2 nanotube arrays with Al2O3 overcoating by atomic layer deposition, Physical Chemistry Chemical Physics. 18, 26, p. 17404-17413, 14 Jul 2016. DOI: 10.1039/C6CP01299J

12) Gregory Auton, Roshan Krishna Kumar, Ernie Hill and Aimin Song, Graphene triangular ballistic rectifier: fabrication and characterization, Journal of Electronic Materials, accepted (2016). DOI: 10.1007/s11664-016-4938-y

13) Gengchang Zhu, Hanbin Wang, Yiming Wang, Xianjin Feng*, Aimin Song*, Performance enhancement of AlGaN/AlN/GaN high electron mobility transistors by thermally evaporated SiO passivation, Applied Physics Letters, 109, 113503 (2016). DOI: 10.1063/1.4962894

14) Linlong Yan, Qian Xin, Lulu Du, Jiawei Zhang, Yi Luo, Qingpu Wang, and Aimin Song, High performance InGaZnO-based Schottky diodes fabricated at room temperature, Phys. Status Solidi C 13, No. 7–9, 618–622 (2016)  DOI: 10.1002/pssc.201510291

15) Qian Xin; Linlong Yan; Lulu Du; jawei zhang; Yi Luo; Qingpu Wang; Aimin Song, Influence of sputtering conditions on room-temperature fabricated InGaZnO-based Schottky diodes, Thin Solid Films, 616, 569–572 (2016). http://dx.doi.org/10.1016/j.tsf.2016.09.016

16) Gregory Auton, Jiawei Zhang, Roshan Krishna Kumar, Hanbin Wang, Xijian Zhang, Ernie Hill and Aimin Song, Graphene ballistic nano-rectifier with very high responsivity, Nature Communications, 7:11670 (2016) DOI: 10.1038/ncomms11670

17) Jiawei Zhang, Xi Kong, Jia Yang, Yunpeng Li, Joshua Wilson, Jie Liu, Qian Xin, Qingpu Wang, A. M. Song, Analysis of Carrier Transport and Band Tail States in p-type Tin Monoxide Thin-film Transistors by Temperature Dependent Characteristics, Applied Physics Letters, 108, 263503 (2016); doi: 10.1063/1.4955124

18) Jiawei Zhang, Qian Xin, and Aimin Song, High performance Schottky diodes based on indium-gallium-zinc-oxide, Journal of Vacuum Science & Technology A 34, 04C101 (2016); doi: 10.1116/1.4945102

19) Jidong Jin, Jiawei Zhang, Remzi E. Kemal, Yi Luo, Peng Bao, Mohammed Althobaiti, David Hesp, Vinod R. Dhanak, Zhaoliang Zheng, Ivona Z. Mitrovic, Steve Hall, Aimin  Song, Effects of annealing conditions on resistive switching characteristics of SnOx thin films, Journal of Alloys and Compounds, 673, 54-59 (2016). doi: 10.1016/j.jallcom.2016.02.215

20) Jiawei Zhang, Hanbin Wang, Joshua Wilson, Xiaochen Ma, Jidong Jin and Aimin Song, Room Temperature Processed Ultra High Frequency Indium Gallium Zinc Oxide Schottky Diode, IEEE Electron Device Letters, 37, NO. 4, 389, APRIL (2016). DOI:  10.1109/LED.2016.2535904

21) Leszek Majewski, and Aimin Song, 20 MHz polymer thin-film nanodiodes, Physica Status Solidi B: Basic Solid State Physics, accepted (2016). http://dx.doi.org/10.1002/pssb.201600050

22) Shahrir R. Kasjoo, Arun K. Singh, Siti S. Mat Isa, Muhammad M. Ramli, Muammar Mohamad Isa, Norhawati Ahmad, Nurul I. Mohd Nor, Nazuhusna Khalid and Ai Min Song, Zero-Bias Microwave Detectors Based on Array of Nanorectifiers Coupled with a Dipole Antenna, Solid-State Electronics, Volume 118, Pages 36–40 April (2016).  doi:10.1016/j.sse.2016.01.010

23) Xiaojiao Zhang, Min Zeng, Jiawei Zhang, Aimin Song, Shiwei Lin, Cosensitization of PbS and CdS quantum dots on highly-ordered TiO2 nanotube arrays with enhanced photoelectrochemical performance, RSC Advances, 6, 8118-8126 (2016).  DOI: 10.1039/c5ra22964b

24) Jiawei Zhang, Linqing Zhang, Xiaochen Ma, Joshua Wilson, Jidong Jin, Lulu Du, Qian Xin, and Aimin Song, Low-frequency noise properties in Pt-indium gallium zinc oxide Schottky diodes, Applied Physics Letters 107, 093505 (2015); doi: 10.1063/1.4930019

25) Jiawei Zhang, Yunpeng Li, Binglei Zhang, Hanbin Wang, Qian Xin & Aimin Song, Flexible indium–gallium–zinc–oxide Schottky diode operating beyond 2.45 GHz, Nature Communications 6, 7561 (2015) doi: 10.1038/ncomms8561

26) Shahrir R. Kasjoo, Arun K. Singh, and Aimin M. Song,  RF characterization of unipolar nanorectifiers at zero bias,  Phys. Status Solidi A, 212, No. 9, 2091–2097 (2015) / DOI 10.1002/pssa.201532147

27) Qian Xin, Linlong Yan, Yi Luo, and Aimin Song. Study of Breakdown Voltage of Indium-Gallium-Zinc-Oxide-Based Schottky Diode. Applied Physics Letters. 2015 March; 106: 113506. DOI:10.1063/1.4916030

28) Binglei Zhang, He Li, Xijian Zhang, Yi Luo, Qingpu Wang, and Aimin Song. Performance regeneration of InGaZnO transistors with ultra-thin channels. Applied Physics Letters. 2015; 106(9): 093506. DOI:10.1063/1.4914296

29) Arun K. Singh, Gregory Auton, Ernie Hill, Aimin Song, Graphene based ballistic rectifiers, Carbon Volume 84, April 2015, Pages 124–129.  doi: 10.1016/j.carbon.2014.11.064

30) Y. Pan, C. V. Powell, A. M. Song and C. Balocco. Micro rectennas: Brownian ratchets for thermal-energy harvesting. Applied Physics Letters. 2014 December; 105, 253901: . DOI:10.1063/1.4905089

31) Ó. García-Pérez, Y. Alimi, A. Song, I. Íñiguez-de-la-Torre, S. Pérez, J. Mateos and T. González, Experimental assessment of anomalous low-frequency noise increase at the onset of Gunn oscillations in InGaAs planar diodes, Appl. Phys. Lett. 105, 113502 (2014). http://dx.doi.org/10.1063/1.4896050

32) A. K. Singh, S.R. Kasjoo and A. M. Song, Low-Frequency Noise of a Ballistic Rectifier, IEEE Transactions on Nanotechnology, VOL. 13, NO. 3, MAY 2014 527. doi: 10.1109/TNANO.2014.2308593 (2014).

33) J. D. Jin, Y. Luo, P. Bao, C. Brox-Nilsen, R. Potter, and A. M. Song, Tuning the electrical properties of ZnO thin-film transistors by thermal annealing in different gases, Thin Solid Films, 552, 3 February 2014, Pages 192–195.    

34) Shahrir R. Kasjoo, and A. M. Song, Terahertz Detection Using Nanorectifiers, IEEE Electron Device Letters, Volume:34 ,  Issue: 12, 1554 – 1556, Dec 2013

35) Christian Brox-Nilsen, Jidong Jin, Yi Luo, Peng Bao, and Aimin M. Song. Sputtered ZnO Thin-Film Transistors With Carrier Mobility over 50 cm2 per Vs. IEEE Transactions on Electron Devices. 2013 October; 60(10): 3424-3429

36) Claudio Balocco, Shahrir R. Kasjoo, Linqing Q. Zhang, Yasaman Alimi, and Aimin M. Song, Low-frequency noise of unipolar nanorectifiers, Applied Physics Letters, 99, 113511 (2011).

37) K. Y. Xu, J. W. Xiong, A. M. Song and G. Wang, Effects of three-dimensional electric-field coupling on a side-gated nanotransistor, Semiconductor Science and Technology, 26 095026 (2011)

38) Mustafa Y. Irshaid, Claudio Balocco, Yi Luo, Peng Bao, Christian Brox-Nilsen, and A. M. Song, Zinc-oxide-based planar nanodiodes operating at 50 MHz, Applied Physics Letters, 99, 092101 (2011).  

39) Claudio Balocco, Shahrir R. Kasjoo, Xiaofeng F. Lu, Linqing Q. Zhang, Yasaman Alimi, Stephan Winnerl and Aimin M. Song, Room-temperature operation of a unipolar nanodiode at terahertz frequencies, Applied Physics Letters, Vol. 98, 223501 (2011).

40) X. F. Lu, C. Balocco, A. M. Song, Highly reproducible nanolithography by dynamic plough of an atomic-force microscope tip and thermal annealing treatment,  IEEE Transactions on Nanotechnology, Vol.10, 53-58 (2011).

41) Kin Kiong Lee, Yi Luo, Xiaofeng Lu, Peng Bao, and Aimin Song, Development of Reactive-Ion Etching for ZnO Based on Nanodevices, IEEE Transactions on Nanotechnology, Vol. 10, 839-843 (2011).

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