电子科学与工程学院


 
导师代码: 12095
导师姓名: 尹良君
性    别:
特    称:
职    称: 教授
学    位: 工学博士学位
属    性: 专职
电子邮件: ljyin@uestc.edu.cn

学术经历:   2007.07-2012.07:中国科技大学,博士学位; 2015.07-2017.10: Delft University of Technology,Technical University of Munich博士后.

个人简介:   2012年,中国科学技术大学博士学位;2015-2017年获国家留学基金委全额资助,赴代尔夫特理工大学、慕尼黑工业大学从事博士后研究。 长期从事跨尺度吸波材料设计、电磁辐射调控、人工智能增材设计等工作。部分指标居国内外领先地位。主要研究方向: 1. 人工智能在电磁器件设计中的应用研究,突破精准、高效、成本局限; 2. 电磁辐射特性调控研究,实现材料自发辐射制冷,减少化石能源消耗; 3. 探索新概念电磁烟雾体系,开展微结构-表面电荷态-分散-吸附-超快固化-电磁特性一体化研究; 4. 电磁辐射可视化研究,通过材料电子结构转变和软硬件集成,精准感知环境电磁强度,预知电磁污染。 主持国家自然科学基金 2 项、省重点项目 1 项,承担国家重大重点项目 5 项、企业攻关项目 3 项。发表 SCI 论文 130 余篇,他引 3500 余次;授权国家发明专利 10 项,2 项实现产业应用。受邀国内外学术会议邀请报告 10 余次,组织国际会议 1 次;任《安全与电磁兼容》《电子元件与材料》编委,Nature、Chem. Mat. 等国际知名期刊审稿人。 课题组学风优良、凝聚力强,尊重并支持学生原创思想,高年级学生互助氛围浓厚,定期开展爬山、密室逃脱、聚餐等团队活动。热忱欢迎对电磁设计、材料工程、人工智能感兴趣的同学报考,携手共进、共同成长。

科研项目:   主持国家自然科学基金2项; 主持中央高校重点基金1项; 主持省重点项目1项; 主持企业攻关项目3项; 承担国家重大重点项目5项。

研究成果:   一作和通讯: 1. Xianyu Jiang, Liang-Jun Yin*, et al. “Enhanced anti-corrosion and microwave absorption performance with carbonyl iron modified by organic fluorinated chemicals”, Applied Surface Science, 572, 151320 (2022). 2. Xiong Yang, Liang-Jun Yin*, et al. “A new thermal degradation mechanism of red Sr2Si5N8:Eu phosphor: From the view of microstructural evolution”, Optical Materials, 121, 111506 (2021). 3. Zhi-Jie Liu, Lin-Bo Zhang*, Liang-Jun Yin*, et al. “Structural self-deterioration mechanism for zirconium diboride in an inert environment”, Ceramics International, 47, 18977-18983 (2021). 4. Hongren Chen, Kehui Qiu*, Liang-Jun Yin*, et al. “Exploring a particle-size-reduction strategy of YAG:Ce phosphor via a chemical breakdown method”, Journal of Rare Earths, 39, 938-945 (2021). 5. Yunxia Liu, Liang-Jun Yin*, et al. “Achieving thermally stable and anti-hydrolytic Sr2Si5N8:Eu2+ phosphor via a nanoscale carbon deposition strategy”, Ceramics International, 47, 3244-3251 (2021). 6. Rong-He Yan, Liang-Jun Yin*, et al. “Surface passivation of applying a thin carbon coating toward significantly thermal stable SrSi2O2N2: Eu2+ green phosphors”, Materials Chemistry and Physics, 256, 123759 (2020). 7. Hou-Lin Lv, Liang-Jun Yin*, et al. “Pursuing low infrared emissivity materials with wider coverage band in ZrB2–CeO2 compounds and their reaction mechanisms”, Ceramics International, 46, 18234-18240 (2020). 8. Yunxia Liu, Liang-Jun Yin*, et al. “Hydrophobic surface modification toward highly stable K2SiF6:Mn4+ phosphor for white light-emitting diodes”, Ceramics International, 46 8811-8818 (2020). 9. ShengHui Zhang, Liang-Jun Yin*, et al. “Achieving an efficient La3Si8N11O4: Eu2+ phosphor via chemical reduction of ano-scale carbon film: Toward white light-emitting diodes”, J. Alloy. Compd., 799, 360-367 (2019). 10. HongRen Chen, Liang-Jun Yin*, et al. “Enhancing the luminescent efficiency of Y3Al5O12:Ce3+ by coating graphitic carbon nitride: Toward white light-emitting diodes, J. Alloy. Compd., 801, 10-18 (2019). 11. Meng wang, Liang-Jun Yin*, et al. “Unique layered structure in Eu doped AlON phosphor”, J. Phys. Chem. C, 123, 3110?3114 (2019). 12. Liang-Jun Yin*, Ying-Lin Liang, et al., ",A novel strategy to motivate the luminescent efficiency of phosphor: drilling nanoholes on the surface”, Chem. Commun., 54, 3480 (2018) 13. Liang-Jun Yin*, Sheng-Hui Zhang., Hui Wang, "Direct observation of Eu atoms in AlN lattice and the first‐principles simulations," J. Am. Ceram. Soc. 102, 310-19 (2018). 14. Liang-Jun Yin*, Wen-Jie Xie, et al., "Insight into the evolution mechanism of carbon film and Eu valence in carbon coated BaMgAl10O17: Eu2+ phosphor annealed in air", Ceram. Int., 44, 8898–8903 (2018). 15. Liang-Jun Yin*, Benjamin Dierre, et al., "Transition of Emission Colours as a Consequence of Heat-Treatment of Carbon Coated Ce3+-Doped YAG Phosphors", Materials, 10, 1180 (2017) invited paper. 16. Liang-Jun Yin*, Chao Cai, et al., "Luminescent properties and microstructure of SiC doped AlON: Eu2+ phosphors", J. Alloy. Compd., 725, 217 (2017). 一作和通讯: 1. Xianyu Jiang, Liang-Jun Yin*, et al. “Enhanced anti-corrosion and microwave absorption performance with carbonyl iron modified by organic fluorinated chemicals”, Applied Surface Science, 572, 151320 (2022). 2. Xiong Yang, Liang-Jun Yin*, et al. “A new thermal degradation mechanism of red Sr2Si5N8:Eu phosphor: From the view of microstructural evolution”, Optical Materials, 121, 111506 (2021). 3. Zhi-Jie Liu, Lin-Bo Zhang*, Liang-Jun Yin*, et al. “Structural self-deterioration mechanism for zirconium diboride in an inert environment”, Ceramics International, 47, 18977-18983 (2021). 4. Hongren Chen, Kehui Qiu*, Liang-Jun Yin*, et al. “Exploring a particle-size-reduction strategy of YAG:Ce phosphor via a chemical breakdown method”, Journal of Rare Earths, 39, 938-945 (2021). 5. Yunxia Liu, Liang-Jun Yin*, et al. “Achieving thermally stable and anti-hydrolytic Sr2Si5N8:Eu2+ phosphor via a nanoscale carbon deposition strategy”, Ceramics International, 47, 3244-3251 (2021). 6. Rong-He Yan, Liang-Jun Yin*, et al. “Surface passivation of applying a thin carbon coating toward significantly thermal stable SrSi2O2N2: Eu2+ green phosphors”, Materials Chemistry and Physics, 256, 123759 (2020). 7. Hou-Lin Lv, Liang-Jun Yin*, et al. “Pursuing low infrared emissivity materials with wider coverage band in ZrB2–CeO2 compounds and their reaction mechanisms”, Ceramics International, 46, 18234-18240 (2020). 8. Yunxia Liu, Liang-Jun Yin*, et al. “Hydrophobic surface modification toward highly stable K2SiF6:Mn4+ phosphor for white light-emitting diodes”, Ceramics International, 46 8811-8818 (2020). 9. ShengHui Zhang, Liang-Jun Yin*, et al. “Achieving an efficient La3Si8N11O4: Eu2+ phosphor via chemical reduction of ano-scale carbon film: Toward white light-emitting diodes”, J. Alloy. Compd., 799, 360-367 (2019). 10. HongRen Chen, Liang-Jun Yin*, et al. “Enhancing the luminescent efficiency of Y3Al5O12:Ce3+ by coating graphitic carbon nitride: Toward white light-emitting diodes, J. Alloy. Compd., 801, 10-18 (2019). 11. Meng wang, Liang-Jun Yin*, et al. “Unique layered structure in Eu doped AlON phosphor”, J. Phys. Chem. C, 123, 3110?3114 (2019). 12. Liang-Jun Yin*, Ying-Lin Liang, et al., ",A novel strategy to motivate the luminescent efficiency of phosphor: drilling nanoholes on the surface”, Chem. Commun., 54, 3480 (2018) 13. Liang-Jun Yin*, Sheng-Hui Zhang., Hui Wang, "Direct observation of Eu atoms in AlN lattice and the first‐principles simulations," J. Am. Ceram. Soc. 102, 310-19 (2018). 14. Liang-Jun Yin*, Wen-Jie Xie, et al., "Insight into the evolution mechanism of carbon film and Eu valence in carbon coated BaMgAl10O17: Eu2+ phosphor annealed in air", Ceram. Int., 44, 8898–8903 (2018). 15. Liang-Jun Yin*, Benjamin Dierre, et al., "Transition of Emission Colours as a Consequence of Heat-Treatment of Carbon Coated Ce3+-Doped YAG Phosphors", Materials, 10, 1180 (2017) invited paper. 16. Liang-Jun Yin*, Chao Cai, et al., "Luminescent properties and microstructure of SiC doped AlON: Eu2+ phosphors", J. Alloy. Compd., 725, 217 (2017). 17. Xian Jian, Liang-Jun Yin*, et al., "Insight the Luminescence Properties of AlON: Eu, Mg Phosphor under VUV Excitation", Materials, 10, 723 (2017). 18. Xian Jian, Liang-Jun Yin*, et al., "Mechanistic Study of Graphitic Carbon Layer and Nanospheres Formation on the Surface of T-ZnO”, Inorg. Chem. Front., (2017). 19. Guozhang Chen, Liang-Jun Yin*, et al., “Synthesis, crystal structure and luminescence properties of Y4Si2O7N2: Eu2+ oxynitride phosphors”, J. Am. Ceram. Soc., 99 (1) 183–190 (2016). 20. Liang-Jun Yin*, et al., “Enhanced Optical Performance of BaMgAl10O17:Eu2+ Phosphor by a Novel Method of Carbon Coating”, J. Phys. Chem. C, 120, 2355?2361 (2016). 21. Liang-Jun Yin*, et al., “Intriguing luminescence properties of (Ba, Sr)3Si6O9N4: Eu2+ phosphors via modifying of synthesis method and cation substitution”, J. Alloys Compd., 682, 481-488 (2016). 22. Xian Jian, Liang-Jun Yin, et al., "Vapor-dissociation-solid Growth of 3D Graphite-like Capsules with Delicate Morphology and Atomic-level Thickness Control”, Cryst. Growth & Des., 16(9), 5040–5048 (2016). 23. Xian Jian*, Liang-Jun Yin*, et al., "Carbon-Based Electrode Materials for Supercapacitor: Progress, Challenges and Prospective Solutions”, J. Electr. Eng., 4, 75-87 (2016). 24. Liang-Jun Yin*, et al., “Luminescent properties of a novel Al10O3N8:Eu2+ phosphor by a mechanochemical activation route”, Opt. Mater., 42, 511-515 (2015). 25. Liang-Jun Yin*, et al., " Improved Blue-Emitting AlN: Eu2+ Phosphors by Alloying with GaN”, J. Am. Ceram. Soc., 98 [12] 3897–3904 (2015). 26. Liang-Jun Yin, et al., “Preparation and microwave-absorbing property of BaFe12O19 nanoparticles and BaFe12O19/Fe3C/CNTs Composites”, RSC Adv., 5, 91665–91669 (2015).

专业研究方向:
专业名称 研究领域/方向 招生类别
080900电子科学与技术 13电磁兼容技术,21磁电信息功能材料与器件,25电磁结构与功能材料 博士学术学位
085400电子信息 01不区分研究方向 博士专业学位
080500材料科学与工程 01电磁功能材料,02磁电信息功能材料与器件,04微波铁氧体材料与器件 硕士学术学位
085601材料工程 01不区分研究方向,02不区分研究方向(非全) 硕士专业学位


学院列表
01  信息与通信工程学院
02  电子科学与工程学院
03  材料与能源学院
04  机械与电气工程学院
05  光电科学与工程学院
06  自动化工程学院
07  资源与环境学院
08  计算机科学与工程学院(网络空间安全学院)
09  信息与软件工程学院(示范性软件学院)
10  航空航天学院
11  数学科学学院
12  物理学院
13  医学院
14  生命科学与技术学院
15  经济与管理学院
16  公共管理学院
17  外国语学院
18  马克思主义学院
21  基础与前沿研究院
22  通信抗干扰全国重点实验室
23  电子科学技术研究院
28  电子科技大学(深圳)高等研究院
31  集成电路科学与工程学院(示范性微电子学院)
88  人文社科高等研究院
90  智能计算研究院