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郭睿倩
所在单位:电光源研究所、信息学院光源与照明工程系
职 称:研究员、博导
邮寄地址:上海市杨浦区淞沪路2005号 复旦大学江湾校区交叉二号楼B4023,邮编:200438
办公电话:021-31242589,65646685
电子邮箱:rqguo@fudan.edu.cn
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教育背景
1992.09-1996.07,中南大学攻读学士学位
1996.09-2001.07,中南大学攻读博士学位 导师:李洪桂
工作履历
2015/05–至今,复旦大学,电光源研究所,所长
2015/04–至今,复旦大学,信息科学与工程学院光源与照明工程系,系主任
2011/04–至今,复旦大学,信息科学与工程学院,研究员,博导
2009/08-2011/08,国家自然科学基金委,信息科学部,光学I项目主任
2005/04-2011/03,复旦大学,先进材料实验室,副研究员
2006/09-2008/09,九州大学,日本学术振兴会(JSPS)外国人特别研究员
2003/07-2005/03,复旦大学,先进材料研究院,讲师
2001/09-2003/07,上海交通大学材料科学与工程学院 博士后 联系导师:顾明元
学生培养
硕士研究生10余名,博士研究生5名,博士后1名。
学术兼职
复旦大学信息科学与工程学院学术委员会委员、教授委员会委员
社会兼职
上海照明学会副理事长
研究领域
低维纳米光电材料与器件;量子点发光材料与高品质白光LED;新型显示
科研项目
1.国家自然科学基金委面上项目,61377046、高显色性量子点白光LED发光材料及器件研究,主持;
2.国家自然科学基金委专项基金项目,61144010、过渡金属掺杂Zn族核壳量子点材料及其发光器件(QD-LED)关键问题研究,主持;
3.教育部留学回国人员科研启动基金项目,一维ZnO纳米线阵列的定向生长及其P型掺杂,主持;
4.国家自然科学基金委NSAF联合基金面上项目,10876009、中红外光纤激光器用材料及其光纤的研究,参加;
5.国家自然科学基金委青年科学基金项目,60606018、半导体量子点量子阱/聚合物复合薄膜光电材料与器件,主持;
6.日本学术振兴会“特别研究员奖励费”项目,HBG8006130、ナノワイヤ付ZnO ナノロッド結晶の創製と紫外ナノオプテイックス素子への応用,主持;
7.国家自然科学基金委“光电信息功能材料”重大研究计划面上项目,90401027、新型量子信息载体材料研究,参加。
奖励与荣誉
1、曾荣获日本材料研究学会颁发的“Certificate of Award for Encouragement of Research of Materials Science”
2、曾荣获“湖南省教育厅科技进步一等奖”
学术成果
代表性文章
- He, L. J., Mei, S. L., Chen, Q. H., Zhang, W. L., Zhang, J., Zhu, J. T., Chen, G. P., Guo, R. Q*. Two-step synthesis of highly emissive C/ZnO hybridized quantum dots with a broad visible photoluminescence, Applied Surface Science, 364(2016)710-717.
- Zhang, J., Chen, Q. H., Zhang, W. L., Mei, S. L., He, L. J., Zhu, J. T., Chen, G. P., Guo, R. Q*. Microwave-assisted aqueous synthesis of transition metal ions doped ZnSe/ZnS core/shell quantum dots with tunable white-light emission, Applied Surface Science, 351(2015)655-661.
- Mei S L, Chen Q H, He L J, Zhang W L, Zhang J, Guo R Q*. Microwave-assisted Synthesis and Fluorescence Enhancement of Doped ZnS White-emission Quantum Dots. China Illuminating Engineering Journal. 2014, 9(1):51-54.
- Chen Q H, Zhang W L, Mei S L, He L J, Zhang J, Zhu J T, Guo R Q*. Highly Transparent and Stable Bulk PMMA/Cu:ZnxCd1-xS/ZnS Nanocomposites with Bright Visible Luminescence. China Illuminating Engineering Journal. 2014, 9(1):55-58.
- Q.H. Chen, J. Zhang, G.P. Chen, R.Q. Guo*, Optical control of the spindle-liked ZnSe quantum dots with precursor solvent and Mn doping, Applied Surface Science, 284 (2013) 870-876.
- Yu Yao, Zhang Jing-Si, Chen Dai-Dai, Guo Ruiqian, Gu Zhihua. Improving the mobility of the amorphous silicon TFT with the new stratified structure by PECVD. Acta Phys. Sin, 2013, 62(13):138501.
- R. Q. Guo, J. Nishimura, M. Matsumoto, M. Higashihata, D. Nakamura, T. Okada, Electroluminescence from ZnO-Nanowire-Based p-GaN/n-ZnO Heterojunction Light-Emitting Diodes. Applied Physics B, 94(2009), 33-38.
- R. Q. Guo, M. Matsumoto, T. Matsumoto, M. Higashihata, D. Nakamura, T. Okada, Aligned Growth of ZnO Nanowires by NAPLD and Their Optical Characterizations. Applied Surface Science, 255(2009), 9671-9675.
- R. Q. Guo, J. Nishimura, M. Matsumoto, M. Higashihata, D. Nakamura, T. Okada, Aligned Growth of ZnO Nanowires and Lasing in Single ZnO Nanowire Optical Cavities. Appl. Phys. B, 90(2008), 539-542.
- R. Q. Guo, J. Nishimura, M. Ueda, M. Higashihata, D. Nakamura, T. Okada, Substrate Effects on ZnO Nanostructure Growth via Nanoparticle-Assisted Pulsed-Laser Deposition. Applied Surface Science, 254(2008), 3100-3104.
- R. Q. Guo, J. Nishimura, M. Matsumoto, D. Nakamura, T. Okada, Catalyst-free synthesis of vertically-aligned ZnO nanowires by nanoparticle-assisted pulsed laser deposition. Appl. Phys. A 93 (2008) 843-847.
- R. Q. Guo, J. Nishimura, M. Matsumoto, M. Higashihata, D. Nakamura, T. Okada, Density-Controlled Growth of ZnO Nanowires via Nanoparticle-Assisted Pulsed-Laser Deposition and Their Optical Properties. Jpn. J. Appl. Phys., 47(2008), 741-745.
- R. Q. Guo, J. Nishimura, M. Ueda, M. Higashihata, D. Nakamura, T. Okada, Vertically Aligned Growth of ZnO Nanonails by Nanoparticle-Assisted Pulsed-Laser Ablation Deposition. Appl. Phys. A 89 (2007) 141-144.
- R. Q. Guo, J. Nishimura, M. Ueda, M. Higashihata, D. Nakamura, T. Okada, Vertically Aligned Growth of ZnO Nanonails by Nanoparticle-Assisted Pulsed-Laser Ablation Deposition. 2007 Pacific Rim Conference on Lasers and Electro-Optics, 1-4(2007) 351-352.
- J. N. Dou, R. Q. Guo, B. Peng, W. Wei, W. Huang*. A Highly Efficient Solvothemal Route towards Starfish-Shaped CdS Nanostructures and CdSe Nanowires. Chinese Journal of Inorganic Chemistry, 22 (2006), 1766-1770.
- T. Okada, R. Q. Guo, J. Nishimura, M. Matsumoto, M. Higashihata, D. Nakamura, Controlled growth of ZnO nanowires by nanoparticle-assisted laser ablation deposition. Zinc Oxide Materials and Devices III: Proceedings of the Society of Photo-Optical Instrumentation Engineers (SPIE), 6895 (2008), S8950-S8950.
- J. Nishimura, R. Q. Guo, M. Higashihata, T. Okada, Optical characteristics of ZnO nanowires synthesized by nano-particles assisted pulsed laser deposition. 2007 Pacific Rim Conference on Lasers and Electro-Optics, 1-4(2007) 349-350.
- R. J. Jia, P. Wang, R. Q. Guo, et al. Preparation and Optical Properties of CdTe and 2, 4, 6-Tri [N-(4-hydroxyphenyl)Maleimide]-Triazine Hybrid Nanocomposites. Acta Physico-Chimica Sinica, 22 (2006), 1143-1146.
- J. T. Han, Y. H. Huang, R. J. Jia, R. Q. Guo, et al. Synthesis and Magnetic Properties of Submicron Bi2Fe4O9. Journal of Crystal Growth, 294(2006), 469-473.
- J. Nishimura, M. Matsumoto, M. Higashihata, R. Q. Guo, T. Okada, Synthesis of ZnO Nanowires by Nanoparticle-Assisted Pulsed-Laser Deposition and Optical Characteristics of Single ZnO Nanowire. The Review of Laser Engineering, 2008, 36 (8): 499-504.
- J. Nishimura, M. Ueda, R. Q. Guo, M. Higashihata, T. Okada, Synthesis of Aligned ZnO Nanowires by Nanoparticle-Assisted Laser Deposition and Their Application to Sensors. The Papers of Technical Meeting on Optical and Quantum Devices, IEE Japan, March 2007, OQD-07-19.
- R. Q. Guo*, M. Y. Gu, H. G. Li, etal. Effect of Precursor Solutions with Different Composition on Synthesis of Ultrafine BaLa0.3Fe11.7O19 Using Sol-Gel Auto-Combustion Technique. Journal of Materials science, 2004, 39 (3): 987-991.
- R. Q. Guo*, M. Y. Gu, Y. J. Chen, etal. Effect of Coordinate Agents on Structure and Magnetic Properties of Ultrafine BaLa0.3Fe11.7O19 Using SHS of Sol-gel. Rare Metal Materials and Engineering, 2004, 33 (11): 1165-1169.
- R. Q. Guo*, Y. J. Chen, M. Y. Gu, etal. Synthesis and Characterization of Gd doped M-type Hexagonal Barium Ferrite ultrafine Powders. Journal of Rare Earths, 2003, 21(5): 543-547.
- R. Q. Guo*, H. G. Li, P. M. Sun, etal. Synthesis and Characterization of Nd-Doped M-type Hexagonal Barium Ferrite Powders. Journal of Central South University of Technology, 2001, 8 (2): 130~134.
- H. G. Li, R. Q. Guo*, P. M. Sun, etal. Synthesis and Characterization of La-Doped M-type Hexagonal Barium Ferrite Fine Powders. Transactions of Nonferrous Metals Society of China, 2001, 11 (3): 447~450.
- R. Q. Guo*, H. G. Li, P. M. Sun, etal. Effect of Rare Earths Dopants on Magnetic Properties of Hexagonal Barium Ferrite Ultrafine Powders. Journal of Functional Materials, 2001, 32(6): 598-599.
- R. Q. Guo*, H. G. Li, P. M. Sun, etal. Structure and Magnetic Properties of La doped M-type Hexagonal Barium Ferrite ultrafine Powders. Rare Metals, 2001, 25(2): 86-89.
- R. Q. Guo*, H. J. Ren, P. M. Sun, etal. Processing of Lead Concentrate with Alkaline Method. Transactions of Nonferrous Metals Society of China, 2001, 11(suppl): 102-104.
- H. G. Li, J. H. Yang, Z. W. Zhao, R. Q. Guo, etal. Study on The Leaching of Mechanically Activated Chalcopyrite. Journal of Central South University of Technology, 1998, 29 (1): 28~31.
- J. H. Yang, H. G. Li, X. F. Zhao, Z. W. Zhao, G. S. Huo, R. Q. Guo. The Development of the Artificial Neutral Network (ANN)-Fuzzy Expert System (FES) Integrated System for the Mechanical Activation of Minerals. Journal of Central South University of Technology, 1999, 30 (1): 21~25.
- M. J. Li, R. Q. Guo. The Application Prospect of Solar Energy in Metallurgical Industry. Rare Metals and Cemented Carbides, 2000, 140: 44-48.
- R. Q. Guo*, M. J. Li. Size Control of Ammonium Paratungstate. Rare Metals and Cemented Carbides, 1999, 139: 46-49.