李强,西安交通大学电子学院 院长助理,副教授,博士生导师,英国谢菲尔德大学电子工程系访问学者。《光子学报》首届青年编委,《Crystals》客座主编。
² 从事宽禁带半导体材料与器件研究,主要研究方向:氧化物半导体材料(氧化铟锡ITO)和超宽禁带半导体材料(氮化硼BN)的制备与器件应用。近年来研究工作主要集中于超宽禁带半导体材料制备及表征、深紫外探测器件设计及制备等方面。
² 近5年来,以第一发明人拥有国家授权发明专利12项,在国内外重要期刊上发表学术论文50余篇。主持国家及省部级科研项目10项,JG课题2项,横向课题2项,教育部产学研项目1项。主讲首批国家一流本科生课程1门,陕西省精品课程1门,作为主编之一编写专著1部。曾获云南省教育杰出人物、西安交通大学教学成果一等奖、电信学部“优秀共产党员”、西安市“碑林青年五四奖章”、“强国青年科学家”提名奖等荣誉。
教育/工作经历:
2004.09—2008.07 云南大学应用物理专业,获学士学位;
2008.09—2014.05 云南大学理论物理,硕博连读,获博士学位;
(期间2009.11—2010.12 团中央大学生骨干培养学校,学员)
2014.06—2016.05 西安交通大学电子科学与技术系,博士后;
2016.06—2020.05 西安交通大学电信学部,讲师,硕士生导师;
(期间2017.10—2018.11 国家公派到英国谢菲尔德大学,访问学者)
2020.06—至今,西安交通大学电子科学与工程学院,副教授,博士生导师,任院长助理;
专利列表:
1. 李强,李虞锋,弓志娜,云峰,一种利用有机大分子材料做催化制备ITO纳米线的方法 中国发明专利,201510094494.9
2. 李强,弓志娜,云峰,一种Si-ITO复合纳米线有序阵列的制备方法 中国发明专利,201510289880.3
3. 李强,弓志娜,王江腾,云峰,基于ITO纳米线网络的电阻开关及制备方法 中国发明专利,201510852064.9
4. 李强,田振寰,尚更,云峰,一种柔性透明的薄膜型电阻开关及制备方法,中国发明专利,201610398430.2
5. 李强,王帅,云峰,一种超宽带减反膜及其制备方法,中国发明专利,201710676047.3
6. 李强,张袁涛,云峰,一种利用高射频功率溅射制备ITO纳米线及其气体传感器的方法,中国发明专利,201810344986.2
7. 李强,王祖名,云峰,泡沫镍/ITO-NWs材料超级电容器及其制备方法,中国发明专利,201810645837.X
8. 李强,秦潇,云峰,一种基于BN(Al)薄膜的电阻开关及制备方法,中国发明专利,201910563612.4
9. 李强,张启凡,秦潇,云峰,一种基于BN(Al)薄膜的布拉格反射镜及制备方法,中国发明专利,201910562431.X
10. 李强,白云鹤,张启凡,秦潇,云峰,一种六方氮化硼薄膜的制备剥离及转移方法,中国发明专利,202010060218.1
11. 李强,张浩然,张启凡,云峰,一种hBN.BAlN异质结紫外探测器及其制备方法,中国发明专利,202110354075.X
12. 李强,汤桦,云峰,金属纳米半球壳阵列的SERS检测透明柔性基底及制备方法,中国发明专利,202010906895.0
发表文章列表(近5年):
1. Q. Li, Z. Gong, Y. F. L, et al. Electro-optical properties of low temperature growth indium-tin-oxide nanowires using polystyrene spheres as catalyst. Nanoscal Res. Lett. 2016, 11:131.
2. Q. Li, Z. Tian, G. Shang, et al. Flexible transparent memory cell: bipolar resistive switching via indium-tin oxide nanowire networks on a poly substrate, Appl. Phys. Express 2016, 9, 115002. (最具学术影响力期刊)
3. Q. Li, Z. Gong, S. Wang, et al. Resistive switching behaviors of ITO nanowire networks. AIP Adv. 2016, 6:025222.
4. Q. Li, Yufeng Li, M. Zhang, et al. Current spreading in GaN-based light-emitting diodes, Chin. Phys. B 2016, 25(11):117102.
5. Q. Li, S. Wang, Z. Gong, et al. Time-resolved photoluminescence studies of InGaN/GaN multi-quantum-wells blue and green light-emitting diodes at room temperature, OPTIK, 2016,127:1809.
6. Z. Gong, Q. Li, Y. Li, et al. Polystyrene-catalytic indium–tin–oxide nanorods grown on green light-emitting diodes for enhancing light extraction. Appl. Phys. Express 2016, 9, 082102. (最具学术影响力期刊)
7. Q. Li, F. Yun, et al. The fabrication and application of polystyrene-assisted ITO nanowires. Sci. Report 2017, 7:1600 (最具学术影响力期刊)
8. Q. Li, S. Wang ,et al. Controlled synthesis of polystyrene-assisted tin-doped indium oxide nanowire networks. J Material Res. 2017,1:1-9 (封面文章,最具学术影响力期刊)
9. Y. Li, L. Feng, X. Su, Q. Li, F. Yun, G. Yuan, J. Han. Whispering gallery mode lasing from InGaN/GaN quantum well microtube. Optics Express, 2017,25,18072 (最具学术影响力期刊)
10. Z. Tian, Y. Li, X. Su, L. Feng, S. Wang, W. Ding, Q. Li, Y. Zhang, et al. Super flexible GaN light emitting diodes using microscale pyramid arrays through laser liftoff and dual transfer. Optics Express, 2018,26:1817 (最具学术影响力期刊)
11. Q. Li, Y, Zhang, et al. Inverstigation of the influence of growth parameters on self-catalyzed ITO nanowires by high RF-power sputtering. Nanotechnology, 2018 ,29:165708. (最具学术影响力期刊)
12. Q. Li, S. Wang, et al. ITO nanowire networks coating on u-hole arrayed substrate as super-broadband antireflection layer. Solar Energy 2018, 173:590-596. (最具学术影响力期刊)
13. Q. Li, Y. Zhang, et al. Heavily tin-doped indium oxide nano-pyramids as high-performance gas sensor. AIP Advance 2018, 8: 115316.
14. Y. Li, L. Feng, F. Li, P. Hu, M. Du, X. Su, D. Sun, H. Tang, Q. Li and F. Yun, Three-Dimesional Anisotropic Microlaser from GaN-based Self-Bent-Up Microdisk. ACS Photonics 2018, 5,4259 (最具学术影响力期刊)
15. Q. Li, Z. Tian, et al. 3D ITO-nanowire networks as transparent electrode for all-terrain substrate. Sci. Report 2019, 9:4983
16. Q. Li, Z. Wang, et al. Indium tin oxide nanowires as voltage self-stabilizing supercapacitor electrodes. J Mater. Res. 2019, 241
18. Y. Zhang, Q. Li*, Z. Tian, et al. Gas-sensing properties of ITO materials with different morphologies prepared by sputtering. SN Applied Sciences, 2020,2:264
19. Q. Li, X. Qin, Q. Zhang, et al. Resistance switching behaviors of continuous-thick hBN films fabricated by radio-frequency-sputtering. J Mater. Res.2020, 35:3247
20. Q. Li, Q. Zhang, Y. Bai, et al. Deep-UV hexagonal boron nitride (hBN)/BAlN distributed Bragg reflectors fabricated by RF-sputtering. Optical Materials Express, 2021, 11:180(最具学术影响力期刊)
21. Q. Zhang, Q. Li*, W. Zhang, et al. Phase transition and bandgap engineering in B1-xAlxN alloys: DFT calculations and experiments. Applied Surface Science, 2021: 151641. (最具学术影响力期刊)
22. Q.Li, M. Wang, Y. Bai, et al. Two-inch wafer-scale exfoliation of hexagonal boron nitride films fabricated by RF-sputtering. Advanced Functional Materials, 2022, 2206094. (最具学术影响力期刊)
讲授课程
1. 《光电子学》,专业基础课,主讲人,国家“金课”建设课程,教育部首批国家一流课程;
2. 《Semiconductor Lighting Technology and Preparation Process》,研究生专业选修课,英语授课,主讲人,校级“金课”建设课程;
3. 《光纤通信技术原理》,研究生专业选修课,主讲人,中国MOOC线上线下共建课程;陕西省精品课程;
编写专著
《半导体微纳制造技术及器件》 主编:云峰, 李强, 王晓亮 科学出版社 2020年9月