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深圳大学物理与光电工程学院导师教师师资介绍简介-宋军

本站小编 Free考研考试/2021-05-30

宋 军

姓名: 宋 军
性别: 男
研究方向:纳米光子学
职称:教授、研究员

邮箱:songjun@szu.edu.cn
座机:


个人简介 教授,博士生导师。2001年本科毕业于浙江大学光电信息工程系,之后先后于浙江大学光学工程专业(硕博直读)及瑞典皇家工学院电气工程专业获得双博士学位。2009年来到深圳大学工作。先后入选深圳大学首批“荔园优青”,深圳大学“优秀****”,深圳市高层次人才地方领军人才,深圳市孔雀计划B类人才,广东省优秀高校青年教师,深圳市“鹏程****”****。主要从事纳米光子学,尤其是技术在生物医学光学检测及新能源技术中的应用研究。先后主持国家重点研发计划子课题、国家自然科学基金面上项目、青年基金、广东省自然科学基金、深圳市学科布局项目等十余项。曾获得王大珩光学奖,有论文入选中国光学十大成果展。近五年以第一/通讯作者在Chemical Society Reviews、Advanced Materials、Angewandte Chemie International Edition、Journal of the American Chemical Society、Nano Energy、Small、Optics Letters、Optics Express等期刊发表学术论文150余篇。 博士后、博士、硕士报考联系邮箱:songjun@szu.edu.cn
个人信息 (一) 教育工作经历: 2017.12 至今,深圳大学,物理与光电工程学院,教授,博导; 2010.12-2017.11,深圳大学,光电工程学院,副教授,博导; 2009.07-2010.11,深圳大学,光电工程学院,讲师; 2008.07- 2009.06,深圳市朗光科技有限公司,预研部,研发工程师; 2006.06-2008.06,瑞典皇家工学院,电气工程专业,哲学博士学位; 2001.09-2006.06,浙江大学,光学工程专业,工学博士学位; 1997.09-2001.06,浙江大学;光电信息工程专业;学士学位。 (二) 获奖: ? 2007年获中国光学学会颁发的王大珩高校光学奖; ? 2011年获中国仪器仪表学会颁发的金国藩青年学子奖; ? 2012年入选广东省“千百十”工程培养对象; ? 2013年4月被认证为深圳市孔雀计划B类人才; ? 2014年入选深圳大学首批荔园优青培育计划; ? 2014年入选首批广东省优秀青年教师培育计划; ? 2015年获“2014中国光学重要成果”奖; ? 2019年入选深圳大学优秀****; ? 2019年入选深圳市鹏城********(长期); ? 2020年入选深圳市地方领军人才; ? 2020年入选英国皇家物理学会(IOP)高被引论文奖。 (三) 主持项目: 1. 国家重点研发计划,“精准医学研究”专项,“多尺度多模态分子影像技术的食管癌预临床与临床应用”,153.84万(总经费1923万),子课题负责人,2018,7-2021,7(在研) 2. 国家自然科学基金面上项目,“基于波长可调谐等离激子纳米激光器的细胞特异性示踪研究(**)”,60万(直接经费),2018,1-2021,12(在研) 3. 国家自然科学基金青年基金,“基于纳米硅波导刻蚀衍射光栅器件的多参量非标记生物分子检测研究(**)”,20万,2011,01-2013,12(已结题); 4. 教育部留学回国启动项目,“用于微生物检测的微纳米光学元件设计与制作,”3.5万,2011,10-2014,10(已结题); 5. 广东省自然科学基金博士启动项目,“硅纳米波导器件在生物分子非标记检测中的应用研究(1045**52),”3万,2010,10-2012,10(已结题); 6. 广东省教育厅育苗项目,“分子非标记检测集成芯片研究(LYM10115),”3万元,2010.1-2012.12(已结题); 7. 广东省科技创新项目,“单生物大分子多模态光学传感芯片设计制作及应用研究(2013KJCX0158),”7万元,2014.1-2015.12(已结题); 8. 广东省高等学校优秀青年教师培养计划,“与微电子工艺兼容的高可靠纳米硅多层集成光芯片制备及关键技术研究(Yq**),”45万,2014.1-2016.12(已结题); 9. 深圳市学科布局项目,“基** 介孔二氧化硅的释药行为探究及其用于肿瘤多模态治疗方面的研究(JCYJ20**2234),”200万,2017.6-2020.6(在研); 10. 深圳市重点实验室提升项目,“面向生物及新能源应用的纳米光子学新技术研究(ZDSYS20**7663),”200万,2014.8-2016.8(已结题); 11. 深圳市孔雀技术创新项目,“面向生物无损非标记成像的新型高亮度上转换纳米探针工作机制及合成研究(KQCX20**9305),”60万,2014.12-2016.12(已结题); 12. 深圳市基础研究计划项目,“上转换纳米激光器用于细胞疗法临床前实验多细胞追踪研究(JCYJ20**5903),”30万,2016.6-2018.6(在研); 13. 深圳市战略性新兴产业发展专项资金,“基于氢化非晶硅的光集成芯片后期热修饰及层间互联技术研究(JCYJ201206**),”10万,2012.09-2014.09(已结题)。 (四) 近三年第一作者及通讯作者20篇代表论文 [1] Shuqing He, Jun Song*, Junle Qu*, and Zhen Cheng*, “Crucial breakthrough of second near-infrared biological window fluorophores: design and synthesis toward multimodal imaging and theranostics,” Chemical Society Reviews, Vol.47, 4258-4278, 2018. (JCR大类一区, IF= 40.443, Top期刊) [2] Yu Chen, Meng Wang, Kai Zheng, Yaguang Ren, Hao Xu, Zhongzheng Yu, Feifan Zhou, Chengbo Liu, Junle Qu, and Jun Song*, “Antimony nanopolyhedron with tunable localized surface plasmon resonances for highly effective photoacoustic imaging guided synergistic photothermal/immuno-therapy,” Advanced Materials, https://doi.org/10.1002/adma. . (IF= 27.398, JCR大类一区, Top期刊) [3] Fan Zhang, Junjie He, Yuren Xiang, Kai Zheng, Bin Xue, Shuai Ye, Xiao Peng, Yuying Hao, Jiarong Lian, Pengju Zeng, Junle Qu and Jun Song*, “Semimetal-Semiconductor Transitions for Monolayer Antimonene Nanosheets and Their Application in Perovskite Solar Cells,” Advanced Materials, Vol. 30, Issue 28, **, 2018. (IF= 25.809, JCR大类一区, Top期刊) [4] Shuai Ye#, Wei Yan#, Mengjie Zhao, Xiao Peng, Jun Song*, and Junle Qu*, “Low saturation intensity, high photostability, and high resolution STED nanoscopy assisted by CsPbBr3 quantum dots,” Advanced Materials, Vol. 30, Issue 23, ** (1-9), 2018. (JCR大类一区, IF= 25.809, Top期刊) [5] Xuan Zhou, Yurong Liu, Zhengyuan Jin, Meina Huang, Feifan Zhou, Jun Song*, Junle Qu, Yu-Jia Zeng*, Peng-Cheng Qian*, and Wai-Yeung Wong*, “Solar-driven hydrogen generation catalyzed by g-C3N4 with poly(platinaynes) as efficient electron donor at low platinum content,” Advanced Science,Vol. 8, Issue 4, **, 2021. (IF= 15.84, JCR大类一区,Top期刊,内封面) [6] Meng Wang, Jun Song*, Feifan Zhou, Ashley Hoover, Cynthia Murray, Benqing Zhou, Lu Wang, Junle Qu*, and Wei R. Chen*, “NIR-triggered phototherapy and immunotherapy via antigen-capturing nanoplatform for metastatic cancer treatment,” Advanced Science Vol.6, Issue 10, **, 2019. (IF= 15.84, JCR大类一区, Top期刊) [7] Muhammad Imrana, Lucheng Peng, Andrea Pianetti, Valerio Pinchetti, Julien Ramade, Julietteito, Francesco Di Stasio, Joka Buha, Stefano Toso, Jun Song*, Ivan Infante*, Sara Bals*, Sergio Brovelli*, and Liberato Manna*, “Halide perovskite?lead chalcohalide nanocrystal heterostructures,” Journal of the American Chemical Society, Vol. 143, Issue 3, 1435–1446, 2021. (IF= 14.612, JCR大类一区,Top期刊) [8] Xin Wang*, Junwu Liang, Qi You, Jiaqi Zhu, Feier Fang, Yuanjiang Xiang*, and Jun Song*, “Bandgap Engineering of Hydroxyl‐Functionalized Borophene for Superior Photo‐Electrochemical Performance,” Angewandte Chemie International Edition, Vol. 59, Issue 52, 23559-23563, 2020. (IF= 12.959, JCR大类一区, Top期刊) [9] Xin Wang, Takashi Hisatomi, Zheng Wang, Jun Song*, Junle Qu, Tsuyoshi Takata, and Kazunari Domen*, “Core‐shell‐structured LaTaON2 Transformed from LaKNaTaO5 Plates for Enhanced Photocatalytic H2 evolution,” Angewandte Chemie International Edition, Vol.58, Issue 31, 10666-10670, 2019. (IF= 12.959, JCR大类一区, Top期刊) [10] Lucheng Peng, Shuai Ye*, Jun Song*, and Junle Qu, “Solution‐Phase Synthesis of Few‐layer Hexagonal Antimonene Nanosheets via Anisotropic Growth,”Angewandte Chemie International Edition, Vol.58, Issue 29, 9891-9896, 2019. (IF= 12.959, JCR大类一区, Top期刊) [11] Xin Wang, Jun Song*, and Junle Qu, “Antimonene: from experimental preparation to practical application,”Angewandte Chemie International Edition, Vol.58, Issue 6, 1574-1584, 2019. (IF= 12.959, JCR大类一区, Top期刊) [12] Xin Wang, Junjie He, Benqing Zhou, Youming Zhang, Jiatao Wu, Rui Hu, Liwei Liu, Jun Song*, and Junle Qu*, “Bandgap-tunable preparation of smooth and large two-dimensional antimonene,” Angewandte Chemie International Edition, Vol.57, Issue 28, 8668-8673, 2018. (JCR大类一区, IF= 12.257, Top期刊) [13] Junjie He, Yuren Xiang, Fan Zhang, Jiarong Lian, Rui Hu, Pengju Zeng, Jun Song*, and Junle Qu*, “Improvement of red light harvesting ability and open circuit voltage of Cu:NiOx based p-i-n planar perovskite solar cells boosted by cysteine enhanced interface contact,” Nano Energy, Vol. 45, 471-479, 2018. (JCR大类一区, IF= 15.548, Top期刊) [14] Ludong Li, Fan Zhang, Shuai Ye, Xiao Peng, Zhenhua Sun, Jiarong Lian, Liwei Liu, Junle Qu and Jun Song*, “Self-powered photodetectors based on CsxDMA1-xPbI3 perovskite films with high detectivity and stability,” Nano Energy, Vol.71, 104611, 2020. (IF= 16.602, JCR大类一区,Top期刊) [15] Yuan Sun, Jing Zhang, Shuai Ye*, Jun Song* and Junle Qu, “Progress report on property, preparation and application of Bi2O2Se,” Advanced Functional Materials, Vol. 30, Issue 49, **, 2020. (IF= 16.836, JCR大类一区, Top期刊) [16] Pengfei Zhao, Meng Wang, Mian Chen, Ze Chen, Xiao Peng, Feifan Zhou*, Jun Song*, and Junle Qu*, “Programming Cell Pyroptosis with Biomimetic Nanoparticles for Solid Tumor Immunotherapy,” Biomaterials, Vol.254, 120142, 2020. (IF= 10.317, JCR大类一区, Top期刊) [17] Dan Wang, Bin Xue, Tymish Y. Ohulchanskyy, Yubin Liu, ArtemYakovliev, Roman Ziniuk, Mengze Xu, Jun Song*, Junle Qu* and Zhen Yuan*, “Inhibiting tumor oxygen metabolism and simultaneously generating oxygen by intelligent upconversion nanotherapeutics for enhanced photodynamic therapy,” Biomaterials, Vol.251, 120088, 2020. (IF= 10.317, JCR大类一区, Top期刊) [18] Yu Chen, Xiaobin Li, Meng Wang, Lucheng Peng, Zhongzheng Yu, Xiao Peng, Jun Song*, and Junle Qu*, “Virus‐inspired deformable mesoporous nanocomposites for high efficiency drug delivery,” Small, Vol.16, Issue 7, **, 2020. (IF=11.459, JCR大类一区,Top期刊) [19] Fan Zhang, Jun Song,* Rui Hu, Yuren Xiang, Junjie He, Yuying Hao, Jiarong Lian, Bin Zhang,* Pengju Zeng, and Junle Qu*, “Interfacial passivation of the p-doped hole-transporting layer using general insulating polymers for high-performance inverted perovskite solar cells,” Small, Vol. 14, Issue 19, **, 2018. (JCR大类一区, IF= 10.856, Top期刊) [20] Yue Chen, Luwei Wang, Wei Yan, Xiao Peng, Junle Qu,* and Jun Song*, “Elimination of re-excitation in stimulated emission depletion nanoscopy based on photon extraction in a phasor plot,” Laser & Photonics Reviews, Vol. 14, Issue 3, **, 2020. (IF= 10.655, JCR大类一区,Top期刊)




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