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苏雪琼


一、个人基本情况

姓名 苏雪琼

职称: 副教授

所在部门: 365best体育官网登录

二、主要研究方向

硫系红外和透明氧化物光电薄膜、钙钛矿和硫系量子点光电材料和器件研发,微纳光电器件在生物传感及诊疗中的应用。

三、教育与工作经历

1998.09-2002.07 东北林业大学 物理教育学士学位

2002.09-2007.07 安徽理工大学 物理教师

2007.09-2014.07 365亚洲体育网入口 物理学硕士博士学位

2011.11-2012.10 澳大利亚国立大学 联合培养博士

2013.03-2013.09 北方微电子 挂职OLED研发工程师

2014.09-至今 365亚洲体育网入口 物理教师

四、主要科研项目

2025-2027年 宁夏自然科学基金重点项目《外泌体生物微纳激光器的构建及其在脑胶质瘤光热治疗中的应用研究》

2025-2027年 宁夏中央引导地方科技发展专项项目《低剂量X光控制生物微纳激光探针在早期小肝癌的诊疗研究》

2021-2022年 国际科研合作种子基金B类项目《基于微纳半导体量子点的光增益及其光热治疗器件系统》

2019-2022年 国家自然科学基金《无机钙钛矿量子点的垂直腔面发射激光器光增益效应的研究》

2015-2017年 北京市科委科技计划项目《石墨烯调控微纳铟镓锌氧薄膜光电特性的研究》

五、代表性成果与荣誉

发表论文

1. Lishan Yang, Ruian Zhu, Huimin Yu, Jin Wang, Yimeng Wang, Yong Pan, Yang Bu, Zhijun Wang, Wei Zhao, Xueqiong Su Upconversion photothermal effect of rare earth-doped mixed-phase quantum dots activates lysosomal function in macrophagesOptical Materials 2025,168:,117365

2. WANG, Y., FANG, M., WANG, R., YANG, L., LIU, J., DING, J., ... & SU, X. (2025). Optical and thermal stability in GexSe10Te90-x chalcogenide films. Journal of Optoelectronics and Advanced Materials, 27(November-December 2025), 574-579.

3. Zhang, H., Li, H. B., Sun, F. S., Su, X. Q., & Sun, C. B. (2025). Effects of impulsive personality on suicide in adolescent depression: The chain mediating of perceived social adversity and security. World Journal of Psychiatry, 15(7), 104373.

4. Wu, L., Pan, Y., Zhang, Y., Geng, Y., Cao, J., Su, X., ... & Gao, D. (2025). Violet Perovskite Quantum Dots of MA3Bi2Br9 and MA3Bi2Br6Cl3 Synthesized by the Cb‐LARP Method with Tunable Emission Wavelengths in Range of 379–400 nm. Advanced Functional Materials, 35(7), 2415315.

5. Lijie Wu, Yong Pan,* Yuan Zhang, Yingge Geng, Jianguo Cao, Xueqiong Su, Violet Perovskite Quantum Dots of MA3Bi2Br9 and MA3Bi2Br6Cl3 Synthesized by the Cb-LARP Method with Tunable Emission Wavelengths in Range of 379–400 nmAdv. Funct. Mater. 2024, 2415315

6. Xueqiong Su , Ruimin Wang, Huimin Yu, Jin Wang, Ruixiang Chen, He Ma and Li Wang *Improvement of X-ray Photoelectric Conversion Performance of MAPbI3 Perovskite Crystals by Ionic Liquid Treatment. Coatings 2024, 14, 633.

7. Wang, S. J., Gao, Y., Su, X., Wang, Y. Z., Qu, Y. P., & Zhao, P. H. (2024). Aqueous pH influence on the electrocatalytic hydrogen evolution reaction with carbon nanotube-supported diiron dithiolato compound. Applied Surface Science, 661, 160074.

8. Zhang, P., Wang, Y., Su, X., Zhang, Q., & Sun, M. (2024). Study of laser-induced multi-exciton generation and dynamics by multi-photon absorption in CdSe quantum dots. Nanomaterials, 14(7), 558.

9. Dongwen Gao,* Li Wang, and Xueqiong Su. Preparation of Novel Heterodimensional Structured Chalcogenide Semiconductor Nano-Film by Pulsed Laser Deposition Technology. Advance Optical Materials. 2023, 11, 2300311

10. Chen R, Su X, Wang J , et al. Modulation of photoluminescence intensity by surface defects of MAPbBr3 crystals[J]. Optical Materials, 2023,138: 113561.

11. Su X, Pan Y, Gao D W, et al. Surface Vertical Multi-Emission Laser with Distributed Bragg Reflector Feedback from CsPbI3 Quantum Dots[J]. Nanomaterials 2023, 13, 1669.

12. Su X, Chen R, Pan Y, et al. High optical modulation efficiency in perovskite CsPbI3/Br3 by ionic liquid ionization[J]. Optical Materials, 2023, 136: 113363.

13. Pan Y, Wang L, Zhang Y, Su X et al. Multi‐Wavelength Laser Emission by Hot‐Carriers Transfers in Perovskite‐Graphene‐Chalcogenide Quantum Dots[J]. Advanced Optical Materials, 2022, 10(21): 2201044.

14. Wang J, Wang L, Su X Q, et al. Bandgap engineering of CdTe/CdSe rod-shaped core/shell and CdTeSe ellipsoidal alloy quantum dots with tunable and intense emission[J]. Journal of Alloys and Compounds, 2022, 920: 165907.

15. Wang J, Wang L, Su X Q, et al. Simultaneous Real-Time Measurements of Temperature, Liquid Level, Humidity, and pH by ZnSe/Co Nanostructure-Coated Polymer Films[J]. ACS Applied Nano Materials, 2022, 5(9): 13612-13625.

16. Wang J, Wang L, Su X Q, et al. Polarization Maintaining Fiber Temperature and Stress Gradient Sensitization Sensor Based on Semiconductor-Metal–Polymer Three-Layer Film Coating[J]. ACS Applied Materials & Interfaces, 2022, 14(17): 20053-20061.

17. Wang J, Wang L, Su X, et al. CdTe quantum dot-based self-supporting films with enhanced stability for flexible light-emitting devices[J]. Soft Matter, 2022, 18(38): 7324-7332.

18. Yu H, Su X, Pan Y, et al. Narrow linewidth CsPbBr3 perovskite quantum dots microsphere lasers[J]. Optical Materials, 2022, 133: 112907.

19. Su X, Pan Y, Gao D, et al. Ultrasimple and Ultrafast Method of Optical Modulation by Perovskite Quantum Dot Attachment to a Graphene Surface[J]. ACS Omega, 2022.

20. Pan Y, Wang L, Su X, et al. The effectively optical emission modulation in perovskite MAPbBr3 crystal by hot-electron transfer from metals[J]. Journal of Physics D: Applied Physics, 2022, 55(37): 375104.

21. Wang J, Wang L, Su X Q, et al. Temperature, stress, refractive index and humidity multi parameter highly integrated optical fiber sensor[J]. Optics & Laser Technology, 2022, 152: 108086.

22. Su, Xueqiong; Pan, Yong; Gao, Dongwen; Li, Shufeng; Wang, Jin; Wang, Rongping; Wang, Li; Micro-Structure Changes Caused by Thermal Evolution in Chalcogenide GexAsySe1-x-y Thin Films by In Situ Measurements, Materials, 2021, 14(10)0-2572. SCIE,

23. Pan Yong; Wang Li; Su Xueqiong; Gao Dongwen; The single layer nano-laser with nanohole arrays prepared by three beams laser interference ablation on Ga0.1Co0.5ZnSe0.4 films, Applied Surface Science, 2021, 544.

24. Pan, Yong; Wang, Li; Su, Xueqiong; Gao, Dongwen; Cheng, Peng; Nanolasers Incorporating Co(x)Ga(0.6-x)ZnSe(0.4) Nanoparticle Arrays with Wavelength Tunability at Room Temperature., ACS Appl Mater Interfaces, 2021, 13(5)6975-6986.

25. S. W. Xu, X. N. Yang, J. H. Yang, R. X. Wang, X. Q. Su. Impacts of glass homogenization on optical properties of rare-earth ion doped chalcogenide glass. Chalcogenide Letters, 2021, 18(6): 277-282.

26. Wang, Jin, Su, Xueqiong, Zhao, PengXiang, Gao, Dongwen, Chen, Ruixiang and Wang, Li. Cancer photothermal therapy based on near infrared fluorescent CdSeTe/ZnS quantum dots. Analytical Methods, 2021, 13(45): 5509-5515.

27. Wang, Jin, Su, Xueqiong, Gao, Dongwen, et al. Capillary Sensors Composed of CdTe Quantum Dots for Real-Time In Situ Detection of Cu2+. Acs Applied Nano Materials, 2021, 4(9): 8990-8997

28. Wang, Jin, Su, Xueqiong, Gao, Dongwen, et al. Near infrared dual wavelength micro surface particle laser . Applied Surface Science, 2021, 562.

29. Gao, Dongwen, Wang, Li, Su, Xueqiong, et al. Enhancing crystalline/optical quality and electrical properties of the Co-doped ZnS thin films a comparative study. Optical Materials, 2021, 111.

30. Gao, Dongwen, Wang, Li, Su, Xueqiong, et al. The role of applied magnetic field in Co-doped ZnS thin films fabricated by pulsed laser deposition. Optical Materials, 2021, 114.

31. Gao, Dongwen, Wang, Li, Su, Xueqiong. Effect of incorporating two-dimensional transition metal Mo and photoelectric element Ga on micro-characteristic of chalcogenide-based ZnS/Se. Ceramics International, 2021, 47(22): 31423-31432.

32. Chen, Ruixiang, Su, Xueqiong, Wang, Jin, et al. The roles of surface defects in MAPbBr(3) and multi-structures in MAPbI(3). Optical Materials, 2021, 122.

33. Wang, Jin, Wang, Li, Su, Xueqiong, et al. Temperature Compensated Solution Concentration Measurement Based on a Cascaded SMS/LPFG Fiber Structure. Optics and Photonics Journal, 2021, 11(8): 294-300.

出版著作

《非线性光学原理及应用》科学出版社,2024年,参编。

《光电子学理论与技术》科学出版社,2021年,参编。

所获荣誉

1、2022-2025年 全国光电设计大赛多项全国二等奖,华北赛区一等奖优秀指导教师

2、2021-2025年作为指导教师获得北京市物理学术竞赛一等奖、二等奖、等奖多次;

32024年北京高等教育学会面上课题立项

42024年365亚洲体育网入口研究生公司产品优秀成果培育项目

52023-2023年 365亚洲体育网入口公司产品成果奖一等奖、二等奖

62023年365亚洲体育网入口创新创业公司产品专项改革课题面上项目(在研,主持)

72023年 国家一流本科课程线上线下混合式《大学物理》

82023年 指导员工获北京市优秀本科论文指导教师

六、联系方式

地址:北京市朝阳区平乐园100号365best体育官网登录

邮编:100124

办公房间数理楼321

E-mail:nysxq@bjut.edu.cn


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