邹军,国家“万人计划”领军人才,特聘教授,国家高级技师(安全评价师一级)
上海应用技术大学理学院
电话: (86-21-60873193)
传真: (86-21-60873193)
E-mail: zoujun@sit.edu.cn
教育
博士,材料学-半导体材料与器件,中科院上海光机所,上海,中国(2007);
学士,无机非金属材料,长春理工大学(2002年)。
工作经历
2012.12 - 至今: 上海应用技术大学理学院任教
2010.02–2012.12:浙江亿米光电科技有限公司总经理
2008.02–2010.02:浙江聚光科技有限公司研发总监
2007.07–2008.02:上海伟钊光学科技有限公司研发工程师
主要研究方向
半导体材料与器件
主讲课程
光电器件及工程应用,大学物理实验等
研究项目
铝酸锂上无极性氮化物薄膜制备关键技术研究,国家自然基金青年基金,2014.01-2016.12,(51302171)
荧光微晶玻璃体材料制备白光LED技术与应用,国家创新基金,2011.06-2013.06,(11C26213304753)
倒装平面涂敷LED封装技术研究,上海市学科能力建设,2014.11-2017.9,(14500503300)
第三代半导体材料及器件研发及应用-基于新型复合荧光体封装的大功率LED光源,浙江省科技计划项目重点研发计划项目,2017.10-2019.10,(2018C01046);
白光LED用荧光体材料制备和产业化研究,浙江省科技计划项目重点研发计划项目,2013.01-2015.12,(2012C01028)
LED灯丝技术开发,横向项目,2016.1-2016.12,(J2016-141)
大功率led专业热柱散热器研发,横向项目,2017.1-2017.12,(J2017-171);
LED柔性发光器件技术开发,横向项目,2017.1-2017.12,(J2017-293);
激光植物灯,横向项目,2017.1-2017.12,(J2017-243)
论文
[1]. Fabrication and optical properties of laser diodes based on composite phosphors film packaging, Optik,(2019)176,254-261.
[2]. Transparent Ce:GdYAG ceramic color converters for high-brightness white LEDs and LDs, Optical Materials, (2019)88,97-102
[3]. Al2O3-Ce:GdYAG composite ceramic phosphors for high-power white light-emitting-diode applications, Journal of the European Ceramic Society, (2019)39,2149-2154
[4]. Reliability of fluoride phosphor K2X6: Mn4+ (K2SiF6: Mn4+, K2(Si, Ge)F6: Mn4+, K2TiF6: Mn4+) for LED application. Journal of Materials Science: Materials in Electronics, (2018) 29: 21061.
[5]. Enhancement of reliability and thermal stability of Ca0.2Sr2.73SiO5: 0.07Eu2+ phosphor by completely substitute Ba for Ca in warm LED application. Optical Materials, (2018)155-164, 0925-3467
[6]. Facile fabrication and luminescence characteristics of a mixture of phosphors (LuAG: Ce and CaAlSiN3: Eu) in glass for white LED. Journal of Non-Crystalline Solids, 489(2018) 57–63.
[7]. High Color Rendering Index of Warm WLED Based on LuAG: Ce3+ PiG Coated CaAlSiN3: Eu2+ Phosphor Film for Residential Lighting Applications, Journal of Materials Science: Materials in Electronics, 29 (2018) 8767-8773.
[8]. Facile preparation and luminescence performance of transparent YAG:Ce phosphor-in-tellurate-glass inorganic color converter for white-light emitting diodes, Journal of Non-Crystalline Solids, 481(2018) 537-542.
[9]. Effect of gallium ion content on thermal stability and reliability of YAG: Ce phosphor films for white LEDs, Ceramics International, 44 (2018) 1091-1098.
[10]. Effect of phosphor composition and packaging structure of flexible phosphor films on performance of white LEDs, Journal of Materials Science: Materials in Electronics, 29(2018) 18476–18485.
[11]. Optical and electrical properties of a spiral LED filament, Journal of Semiconductors, 39(2018): 024003.
[12]. Effect of different bending shape on thermal properties of flexible LED filament, Chinese Physics B. 27(2018)110701-1-110701-7.
[13]. Quality-Improved GaN Epitaxial Layers Grown on Striped Patterned Sapphire Substrates Ablated by Femtosecond Laser. Applied Sciences. 8(2018) doi:10.3390/app8101842.
[14]. Fabrication Process and Performance Analysis of CSP LED Filaments with a Stacked Package Design. Applied Sciences. doi:10.3390/app8101940
[15]. Optical and thermal properties of flip-chip LED bulbs using chip-scale package. Journal of Physics: Conference Series.1074 (2018) 012002. doi :10.1088/1742-6596/1074/1/012002.
[16]. Analysis of high-temperature aging and microstructure of FC LED solder joints of a silver conductive layer bonded using SAC solder. Journal of Physics: Conference Series. 1074 (2018) 012003. doi :10.1088/1742-6596/1074/1/012003.
[17]. Effect of different welding methods on flip-chip LED (FC-LED) filament properties. Applied Sciences. doi:10.3390/app8112254.
[18]. Effect of sintering temperature on the photoluminescence properties of red-emitting color conversion glass, Journal of Materials Science: Materials in Electronics, 29(2018) 2035-2039.
[19]. 白光LED用荧光玻璃的制备方法及应用研究进展. 材料导报(纳米与新材料专辑)32(2018)72-80.
[20]. 双色荧光粉封装3014器件的光谱耦合特性及其性能[J]. 照明工程学报, 2018(2).
[21]. 改善硼硅基质荧光玻璃发光性能的方法[J]. 上海应用技术学院学报(自然科学版), 2018(2).
[22]. 大功率LED灯具研究进展[J]. 应用技术学报, 2018, 18(1):26-30.
[23]. The study of luminescence properties on Ce:YAG phosphor in glass co-sintered at different temperatures, Journal of Materials Science: Materials in Electronics, 28(2017) 1-6.
[24]. Effect of annealing in hydrogen atmosphere on the photoluminescence properties of phosphor-in- glass in tellurate glass, Journal of Non-Crystalline Solids, 475(2017) 179-183.
[25]. Preparation and reliability of flexible phosphor film for warm white LED, Materials Technology, 33(2017) 1-7.
[26]. Synthesis and luminescent properties of a new cyan afterglow phosphor CaSnO3: Gd3+, Ceramics International, 43(2017) 2750-2755.
[27]. Effect of hydrogen annealing on the photoluminescence properties of colour conversion glass in borosilicate glass, Journal of Alloys and Compounds, 708(2017)1201-1205.
[28]. hermal stability and reliability studies of (Sr, Ca) AlSiN3:Eu2+, phosphors for LED application[J]. Journal of Materials Science Materials in Electronics, 28(2017):1-9.
[29]. Optical properties of wavelength-tunable green-emitting color conversion glass ceramics[J]. Chinese Physics B,26(2017) 596-599
[30]. 低温共烧结制备Lu2.94-xYXAl5O:0.06Ce荧光玻璃的研究.光电技术应用, 2017, 32(6): 39-4312
[31]. 荧光薄膜的制备方法及其在LED中的应用. 应用技术学报, 2017: 207-212.
[32]. 银线间填充胶对倒装LED灯丝性能的影响. 中国照明电器, 2017: 6-10.
[33]. 全包围封装与半包围封装LED灯丝的光学性能研究. 中国照明电器, 2017: 26-30.
[34]. 螺旋柔性LED灯丝的光学和热学性能分析[J]. 中国照明电器, 2017(10).
[35]. 烧结温度对硼硅基质荧光玻璃发光性能影响[J]. 无机材料学报, 2017, 32(3):257-262.
[36]. Enhancement of thermal stability and reliability of green LuAG phosphors by appropriate Y substitution, Journal of Materials Science: Materials in Electronics, 28(2016) 4075-4082.
[37]. Enhancement of thermal stability and reliability of BaxSr2-xSiO4:Eu2+ phosphors by Ba2+ doping, Journal of Materials Science: Materials in Electronics, 27(2016) 13199-13208.
[38]. Effect of Sr/Ca substitution on phase structure and photoluminescence properties of micro-SrxCa1-xAlSiN3: Eu2+ phosphor for high CRI white LEDs, Ceramics International, 42(2016) 14956-14962.
[39]. Effect of Al/Ga substitution on photoluminescence and chromatic properties of Y3Al5-xGaxO12: Ce3+ phosphor, Journal of Materials Science: Materials in Electronics, 27(2016): 8074-8079.
[40]. Optical and reliability properties studies of green YAG phosphors by Ga substitution, Journal of Materials Science: Materials in Electronics, 2016, 27(2016) 3376-3383.
[41]. Nonpolar m-plane GaN-based light-emitting diodes on LiAlO2 (100) substrate, Journal of Materials Science: Materials in Electronics, 27(2016) 2049-2053.
[42]. Bridgman growth, luminescence and energy transfer studies of Tm3+ or/and Dy3+ co-doped Bi4Si3O12 crystal phosphor, Journal of Ceramic Processing Research., 17(2016) 537-542.
[43]. AC LED光源的光电性能研究,光电技术应用, 31(2016):27-31.
[44]. 基于倒装芯片制备LED灯丝的光学热学研究. 光电子技术, 2016: 168-172
专利
[1]. 一种透明低熔点的微晶玻璃及其制备方法和应用. 公开号:CN 106698933A.
[2]. 一种低熔点透明微晶玻璃及其制备方法和应用. 公开号:CN 106587636A.
[3]. 一种红色荧光玻璃及其制备方法和应用. 公开号:CN 107827354 A.
[4]. 一种应用于LED封装的绿色荧光玻璃及其制备方法. 公开号: CN 107721161 A.
[5]. 一种Ce:YAG荧光玻璃及其制备方法和在白光LED中的应用. 公开号: CN 107500529 A.
[6]. 一种双层荧光体的制备方法. 公开号:CN 107973527 A.
[7]. 一种复合荧光粉的荧光玻璃及其制备方法和应用. 公开号:CN108455846 A.
[8]. 高压交流LED光源及用其制成的照明装置. 公开号:CN 106838669A.
[9]. 一种白光LED用“汉堡包”结构荧光薄膜的制备方法. 公开号:CN 107579146 A.
[10]. 一种用于LED的荧光薄膜结构的制备方法. 公开号:CN 107808923 A.
[11]. 一种白光LED用图案化荧光薄膜结构及其制备方法. 公开号:CN 108321285 A.
[12]. 一种LED用荧光薄膜的制备方法. 公开号:CN 108538975 A.
[13]. 一种低熔点碲酸盐玻璃陶瓷制备方法及其应用. 公开号:CN 106630604A.
[14]. 一种LED照明用碲酸盐透明荧光玻璃的制备方法. 公开号:CN 107572777 A.
[15]. 一种荧光玻璃的制备方法及荧光玻璃.公开号:CN 108503216 A.
[16]. 一种掺杂稀土Eu3+的碲酸盐荧光玻璃材料及其制备方法. 公开号:CN 108545931 A.
[17]. 基于荧光基板的倒装LED灯丝及其封装工艺. 公开号:CN 106449625 A.
[18]. 一种倒装柔性LED灯丝的固晶工艺. 公开号:CN 108630797 A.
[19]. 将荧光薄膜用于LED灯丝制作球泡灯的方法. 公开号:CN 106895282A.
[20]. 一种芯片级封装的倒装LED白光芯片的制备方法. 公开号:CN 107482103 A.
[21]. 一种基于芯片级封装的可自调色温的LED灯丝制备方法. 公开号:CN 107464803 A.
[22]. 一种具有叠层封装结构的LED灯丝制备方法. 公开号:CN 108598068 A.
[23]. 用于球泡灯内的螺旋LED灯丝制备方法. 公开号:CN 106678580 A.
[24]. 一种用于LED模组的锡膏丝网印刷方法. 公开号:CN 107627748 A.
[25]. 一种基于烟囱效应的可自调色温的LED灯泡的制备方法. 公开号:CN 108826031 A.
[26]. 一种LED柔性直条灯丝落料机. 公开号:CN 108908450 A
[27]. 一种制备单芯片超宽带白光LED的方法. 公开号:CN 106784194 A.
[28]. 一种制备基于铝酸锂衬底单芯片白光LED的方法及其结构. 公开号:CN 107331743 A.
[29]. 一种提高LED良品率的新型应用工艺. 公开号:CN 108649113 A.
[30]. 一种基于荧光体制备激光照明器件的制备方法.发明专利公开号:CN 108598862 A
[31]. 一种激光生长灯的制备方法. 发明专利公开号:CN 108758378 A
[32]. 一种制备基于植物培育工厂用生长灯的方法. 发明专利公开号:CN 108662457 A
[33]. 一种LED用荧光体光辐射老化装置及方法. 发明专利公开号:CN 108827865 A
[34]. 一种驱蚊球泡灯. 发明专利公开号:CN 109169626A
[35]. LED光电性能检测系统及检测方法. 发明专利公开号:CN 109297687A
[36]. LED用荧光薄膜结构及其制备方法及发光光源. 发明专利公开号:CN 109390454A