郭睿倩

研究员、博导

职务:信息学院学术委员会委员、信息学院教授委员会成员、光源与照明工程系主任、电光源研究所所长

<p>电子邮件:rqguo@fudan.edu.cn</p><p>办公地点:江湾校区交叉二号楼B4023</p><p>电话:021-31242589</p>
  • 研究方向

  • 学术任职

  • 获奖情况

  • 学习工作经历

  • 授课情况

  • 代表性论文或专著

  • 量子点发光材料  

  • 量子点LED(QLED)照明和显示  

  • 低维纳米光电材料和器件

  • 上海照明学会副理事长

  • 上海照明学会国际交流委员会主任

  • 上海照明电器协会副会长

  • Certificate of Award for Encouragement of Research of Materials Science” issued by MRS-J.

  • 1992/09至1996/07   中南大学冶金科学与工程学院 学士

  • 1996/09至2001/07   中南大学冶金科学与工程学院 硕博连读

  • 2001/09至2003/07  上海交通大学材料科学与工程学院 博士后

  • 2003/07至2005/04   复旦大学讲师

  • 2005/04至2011/04   复旦大学副研究员、硕导

  • 2006/09至2008/09   日本九州大学 日本学术振兴会(JSPS)外国人特别研究员  

  • 2009/08至2011/08   国家自然科学基金委员会信息学部流动项目主任

  • 2011/04至今             复旦大学研究员、博导

  • 本科生课程:光电显示技术

  • 研究生课程:纳米光电薄膜

  • 博士生专业英语

  • S. Mei, J. Zhu, W. Yang, R. Guo*, Tunable emission and morphology control of the Cu-In-S/ZnS quantum dots with dual stabilizer via microwave-assisted aqueous synthesis, Journal of Alloys and Compounds, 729C (2017) pp. 1-8.

  • J. Zhu, S. Mei, W. Yang, G. Zhang, Q. Chen, W. Zhang, R. Guo*, Tunable emission of Cu (Mn)-doped ZnInS quantum dots via dopant interaction, J Colloid InterfSci, 506 (2017) 27-35.

  • W. Yang, G. He, S. Mei, J. Zhu, W. Zhang, Q. Chen, G. Zhang, R. Guo*, Controllable synthesis of dual emissive Ag:InP/ZnS quantum dots with high fluorescence quantum yield, Applied Surface Science, 423 (2017) 686-694.

  • W. Zhang, W. Yang, P. Zhong, S. Mei, G. Zhang, G. Chen, G. He, R. Guo*, Spectral optimization of color temperature tunable white LEDs based on perovskite quantum dots for ultrahigh color rendition, Optical Materials Express, 7 (2017) 3065.

  • L. He, S. Mei, Q. Chen, W. Zhang, J. Zhang, J. Zhu, G. Chen, R. Guo*, Two-step synthesis of highly emissive C/ZnO hybridized quantum dots with a broad visible photoluminescence, Applied Surface Science, 364 (2016) 710-717.

  • W. Yang, P. Zhong, S. Mei, Q. Chen, W. Zhang, J. Zhu, R. Guo*, G. He, Photometric Optimization of Color Temperature Tunable Quantum Dots Converted White LEDs for Excellent Color Rendition, IEEE Photonics Journal, 8 (2016) 1-11.

  • J. Zhang, Q. Chen, W. Zhang, S. Mei, L. He, J. Zhu, G. Chen, R. Guo*, 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.

  • Chen Q H, Zhang J, Chen G P, 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.

  • Vertically Aligned Growth of ZnO Nanonails by Nanoparticle-Assisted Pulsed-Laser Ablation Deposition,Appl. Phys. A, 89, 141-144.

  • Density-Controlled Growth of ZnO Nanowires via Nanoparticle-Assisted Pulsed-Laser Deposition and Their Optical Properties, Jpn. J. Appl. Phys., 47, 741-745.

  • Electroluminescence from ZnO-Nanowire-Based p-GaN/n-ZnO Heterojunction Light-Emitting Diodes,Applied Physics B, 94, 33-38.

  • Aligned Growth of ZnO Nanowires and Lasing in Single ZnO Nanowire Optical Cavities,Appl. Phys. B, 90, 539-542.

  • Catalyst-free synthesis of vertically-aligned ZnO nanowires by nanoparticle-assisted pulsed laser deposition, Appl. Phys. A, 93, 843-847.

  • Aligned Growth of ZnO Nanowires by NAPLD and Their Optical Characterizations,Applied Surface Science, 255, 9671-9675.

  • Substrate Effects on ZnO Nanostructure Growth via Nanoparticle-Assisted Pulsed-Laser Deposition,Applied Surface Science, 254, 3100-3104.