基本信息
薛剑耿 杭州医学研究所
电子邮件: xuejiangeng@him.cas.cn
通信地址: 浙江省杭州市钱塘区呈瑞街150号
邮政编码:
电子邮件: xuejiangeng@him.cas.cn
通信地址: 浙江省杭州市钱塘区呈瑞街150号
邮政编码:
招生信息
招生专业
0809Z1-生物电子学083100-生物医学工程
招生方向
新药开发,药理可穿戴可植入生物光电器件生化检测与传感
教育背景
2001-12--2004-09 普林斯顿大学 博士1999-09--2001-11 普林斯顿大学 硕士1998-07--1999-08 俄亥俄州立大学 研究生学习1995-09--1998-07 中国科学技术大学 硕士1991-09--1995-07 中国科学技术大学 学士
工作经历
工作简历
2025-08~现在, 中国科学院杭州医学研究所, 研究员2015-08~2017-08,佛罗里达大学, 材料与科学工程系副系主任2014-08~2025-08,佛罗里达大学, 教授2014-01~2014-06,浙江大学, 兼职教授2013-08~2016-08,佛罗里达大学, 佛罗里达大学研究基金会教授2012-06~2012-07,中国科学技术大学, 访问教授2010-08~2014-08,佛罗里达大学, 副教授2005-08~2010-08,佛罗里达大学, 助理教授2004-09~2005-08,全球光能公司Global Photonic Energy Corp., 研发科学家
专利与奖励
奖励信息
(1) Scialog Fellow, Research Corporation for Science Advancement (RCSA), 其他, 2011(2) 美国能源部固体照明研发突出成果奖, , 部委级, 2010(3) 美国能源部固体照明研发突出成果奖, , 部委级, 2009(4) 美国国家科学基金会杰青奖(NSF CAREER Award), 国家级, 2007
专利成果
( 1 ) Sunlight harvesting transparent windows, 发明专利, 2024, 第 1 作者, 专利号: US12,088,245( 2 ) Sunlight harvesting transparent windows, 发明专利, 2021, 第 1 作者, 专利号: US11,177,766( 3 ) Method and apparatus for light absorption and charged carrier transport, 发明专利, 2020, 第 1 作者, 专利号: US10,873,044( 4 ) Thin film photovoltaic devices with microlens arrays, 发明专利, 2018, 第 1 作者, 专利号: US10,121,925( 5 ) Method and apparatus for light absorption and charged carrier transport, 发明专利, 2018, 第 1 作者, 专利号: US10,096,789( 6 ) Quantum-dot based hybrid LED lighting devices, 发明专利, 2017, 第 1 作者, 专利号: US9,735,386( 7 ) Transparent quantum dot light-emitting diodes with dielectric/metal/dielectric electrode, 发明专利, 2016, 第 3 作者, 专利号: US9,419,174( 8 ) Air stable organic-inorganic nanoparticles hybrid solar cells, 发明专利, 2015, 第 3 作者, 专利号: US9,147,852( 9 ) High efficiency organic photovoltaic cells employing hybridized mixed-planar heterojunctions, 发明专利, 2015, 第 1 作者, 专利号: US9,112,164( 10 ) Stable and all solution processable quantum dot light-emitting diodes, 发明专利, 2015, 第 3 作者, 专利号: US9,054,330
出版信息
发表论文
(1) Diagnosing the Role of Hydrogen Bonding in the Organization, Aggregation, and Optical Properties of Phthalhydrazide-Functionalized Molecules in Solution and Solid State, New Journal of Chemistry , 2025, (2) Structure-Property Relationships in Dicyanopyrazinoquinoxalines and Their Hydrogen-Bonding-Capable Dihydropyrazinoquinoxalinedione Derivatives, Beilstein Journal of Organic Chemistry , 2024, (3) Dicyanorhodanine-Pyrrole Conjugates for Visible Light-Driven Quantitative Photoswitching in Solution and the Solid State, Journal of the American Chemical Society , 2024, (4) Thin-Film Morphology and Optical Properties of Photoisomerizable Donor–Acceptor Oligothiophenes, ACS Applied Materials & Interfaces , 2022, (5) Structure–Assembly–Property Relationships of Simple Ditopic Hydrogen-Bonding-Capable π-Conjugated Oligomers, Organic Materials , 2021, (6) High-Purity and Saturated Deep-Blue Luminescence from trans-NHC Platinum(II) Butadiyne Complexes: Properties and Organic Light Emitting Diode Application, ACS Applied Materials & Interfaces , 2021, (7) trans-N-(Heterocyclic Carbene) Platinum(II) Acetylide Chromophores as Phosphors for OLED Applications, ACS Applied Electronic Materials , 2020, (8) Tuning the structural and spectroscopic properties of donor–acceptor–donor oligomers via mutual X-bonding, H-bonding, and π–π interactions, Journal of Materials Chemistry C , 2018, (9) Efficient and long-lifetime full-color light-emitting diodes using high luminescence quantum yield thick-shell quantum dots, Nanoscale, 2017, (10) Super color purity green quantum dot light-emitting diodes fabricated by using CdSe/CdS nanoplatelets, Nanoscale, 2016, (11) Enhancement in Organic Photovoltaic Efficiency through the Synergistic Interplay of Molecular Donor Hydrogen Bonding and -Stacking, Advanced Functional Materials , 2015, (12) High Efficiency Light Emitting Devices based on Quantum Dots with Tailored Nanostructures, Nature Photonics, 2015, (13) High Efficiency, Low Turn-on Voltage Blue-Violet Quantum-Dot-Based Light-Emitting Diodes, Nano Letters, 2015, (14) The Influence of Solubilizing Chain Stereochemistry on Small Molecule Photovoltaics, Advanced Functional Materials, 2014, (15) Recent Progress in Organic Photovoltaics: Device Architecture and Optical Design, Energy & Environmental Science , 2014, (16) Enhancing the Efficiency of Solution-Processed Polymer:Colloidal Nanocrystal Hybrid Photovoltaic Cells Using Ethanedithiol Treatment, ACS Nano, 2013, (17) Enhancing Light Extraction in Top-Emitting Organic Light-Emitting Devices Using Molded Transparent Polymer Microlens Arrays, Small, 2012, (18) Variable-Gap Conjugated Oligomers Grafted to CdSe Nanocrystals, Chemistry of Materials, 2012, (19) Macroscopic Volume Change of Dynamic Hydrogels induced by Reversible DNA Hybridization, Journal of the American Chemical Society , 2012, (20) A universal optical approach to enhancing efficiency of organic-based photovoltaic devices, Energy & Environmental Science , 2012, (21) Extended Conjugation Platinum(II) Porphyrins for use in Near-Infrared Emitting Organic Light Emitting Diodes, Chemistry of Materials, 2011, (22) Stable and efficient quantum-dot light-emitting diodes based on solution-processed multilayer structures, Nature Photonics, 2011, (23) Down-conversion white organic light light-emitting diodes using microcavity structure, Advanced Energy Materials, 2011, (24) Hybrid Polymer-CdSe Solar Cells with a ZnO Nanoparticle Buffer Layer for Improved Efficiency and Lifetime, Journal of Materials Chemistry , 2011, (25) Blue-Violet Electroluminescence from a Highly Fluorescent Purine, Chemistry of Materials, 2010, (26) Electroluminescence from Light-Emitting Polymers/ZnO Nanoparticle Heterojunctions at Sub-bandgap Voltages, Nano Today, 2010, (27) Effect of electron injection and transport materials on efficiency of deep-blue phosphorescent organic light-emitting devices, Organic Electronics, 2009, (28) Effect of charge balance on high-efficiency blue-phosphorescent organic light-emitting diodes, ACS Applied Materials & Interfaces , 2009, (29) White phosphorescent organic light-emitting devices with dual triple-doped emissive layers, Applied Physics Letters, 2009, (30) Near Infrared Organic Light-Emitting Devices based on Donor-Acceptor-Donor Oligomers, Applied Physics Letters , 2008, (31) Efficient deep-blue phosphorescent organic light-emitting device with improved electron and exciton confinement, Applied Physics Letters , 2008, (32) Organic double-heterostructure photovoltaic cells employing thick tris(acetylacetonato)ruthenium(III) exciton-blocking layers, Advanced Materials, 2005, 第 3 作者(33) A hybrid planar-mixed molecular heterojunction photovoltaic cell, Advanced Materials, 2005, 第 1 作者(34) Asymmetric tandem organic photovoltaic cells with hybrid planarmixed molecular heterojunctions, Applied Physics Letters, 2004, 第 1 作者(35) 4.2% efficient organic photovoltaic cells with low series resistances, Applied Physics Letters, 2004, 第 1 作者(36) Organic optical bistable switch, Applied Physics Letters , 2003, 第 1 作者(37) Organic thin-film transistors based on bis(1,2,5-thiadiazolo)-p-quinobis(1,3-dithiole), Applied Physics Letters , 2001, 第 1 作者
发表著作
(1) 用于可再生能源系统的有机材料与器件, Organic Materials and Devices for Sustainable Energy Systems, Materials Research Society, 2010-12, 第 1 作者
科研活动
参与会议
(1)Solution-processed quantum dot light-emitting devices: material composition, device physics, and optical design 薛剑耿 2023-04-09(2)Solution-processed quantum dot light-emitting devices: material composition, device physics, and optical design 2019-07-14(3)Quantum Dot Light-Emitting Devices: Material Composition, Device Physics, and Optical Design 22届全国半导体物理大会 2019-07-09(4)Luminescent Colloidal Quantum Dots for Photonic Applications 2018-05-28(5)Electroluminescent devices based on colloidal quantum dots: material composition, device physics, and optical design 2018-04-10(6)High Efficiency Multilayer Light-Emitting Devices with Colloidal Quantum Dot Emitters 2018-04-06(7)Beyond OLEDs: Electroluminescence from Colloidal Semiconductor Quantum Dots 2017-04-17(8)Luminescent Quantum Dots For Display and Lighting Applications 2016-10-27(9)High Efficiency Multilayer Light-Emitting Devices with Quantum Dot Emitters 2016-07-24(10)High efficiency quantum-dot based light-emitting devices 2015-08-09(11)Photovoltaic Cells Incorporating Tailored Organic and Inorganic Nanostructures 2014-11-16(12)Small molecule organic photovoltaic cells: interdigitated nanostructures, molecular templates, and self-assembly 2014-04-21