发光学报, 2013, 34 (5): 535, 网络出版: 2013-05-22   

利用金属纳米颗粒改善有机光电器件性能

High-efficiency Organic Photoelectric Devices with Metal Nanoparticles
作者单位
集成光电子国家重点联合实验室 吉林大学 电子科学与工程学院, 吉林 长春130012
引用该论文

谢文法, 徐凯, 李杨, 闻雪梅, 张乐天. 利用金属纳米颗粒改善有机光电器件性能[J]. 发光学报, 2013, 34(5): 535.

XIE Wen-fa, XU Kai, LI Yang, WEN Xue-mei, ZHANG Le-tian. High-efficiency Organic Photoelectric Devices with Metal Nanoparticles[J]. Chinese Journal of Luminescence, 2013, 34(5): 535.

参考文献

[1] Tang C W. Two-layer organic photovoltaic cell [J]. Appl. Phys. Lett., 1986, 48(2):183-185.

[2] Tang C W, Van Slyke S A. Organic electroluminescent diodes [J]. Appl. Phys. Lett., 1987, 51(12):913-915.

[3] Muller C D, Reckefuss N, Rudati P, et al. Multi-color polymeric OLEDs by solution processing [J]. Org. Proc. Res. Dev., 2004, 5214:21-30.

[4] Schilinsky P, Waldauf C, Brabec C J. Performance analysis of printed bulk heterojunction solar cells [J]. Adv. Funct. Mater., 2006, 16(13):1669-1672.

[5] Kulkarni A P, Tonzola C J, Babel A, et al. Electron transport materials for organic light-emitting diodes [J]. Chem. Mater., 2004, 16(23):4556-4573.

[6] Pei Q B, Yu G, Zhang C, et al. Polymer light-emitting electrochemical cells [J]. Science,1995, 269(5227): 1086-1088.

[7] Aziz H, Popovic Z D, Hu N X, et al. Degradation mechanism of small molecule-based organic light-emitting devices [J]. Science, 1999, 283(5409):1900-1902.

[8] Yagi T, Satoh R, Yamada Y, et al. Organic light-emitting diodes with enhanced out-coulping efficiency using high-refractive-index glass frit [J]. J. Soc. Inf. Display, 2012, 20(9):526-532.

[9] Ji W Y, Zhang L T, Xie W F. Improving efficiency roll-off in phosphorescent OLEDs by modifying the exciton lifetime [J]. Opt. Lett., 2012, 37(11):2019-2021.

[10] Moller S, Forrest S R. Improved light out-coupling in organic light emitting diodes employing ordered microlens arrays [J]. J. Appl. Phys., 2002, 91(5):3324-3327.

[11] Zhu J F, Xue M, Shen H J, et al. Plasmonic effects for light concentration in organic photovoltaic thin films induced by hexagonal periodic metallic nanospheres [J]. Appl. Phys. A, 2011, 98(15):151110-1-5.

[12] Liu D A, Fina M, Ren L, et al. Enhanced luminance of organic light-emitting diodes with metal nanoparticle electron injection layer [J]. Appl. Phys. A, 2009, 96(2):353-356.

[13] Ni X M, Zhang J B, Zhang Y F, et al. Citrate-assisted synthesis of prickly nickel microwires and their surface modification with silver [J]. J. Colloid Interf. Sci., 2007, 307(2):554-558.

[14] Nath N, Chilkoti A. A colorimetric gold nanoparticle sensor to interrogate biomolecular interactions in real time on a surface [J]. Anal. Chem., 2002, 74(3):504-509.

[15] Talley C E, Jackson J B, Oubre C, et al. Surface-enhanced Raman scattering from individual Au nanoparticles and nanoparticle dimer substrates [J]. Nano Lett., 2005, 5(8):1569-1574.

[16] Thompson D G, Enright A, Faulds K, et al. Ultrasensitive DNA detection using oligonucleotide-silver nanoparticle conjugates [J]. Anal. Chem., 2008, 80(8):2805-2810.

[17] Alexiou C, Jurgons R, Schmid R, et al. In vitro and in vivo investigations of targeted chemotherapy with magnetic nanoparticles [J]. J. Magn. Magn. Mater., 2005, 293(1):389-393.

[18] Fujiki A, Uemura T, Zettsu N, et al. Enhanced fluorescence by surface plasmon coupling of Au nanoparticles in an organic electroluminescence diode [J]. Appl. Phys. Lett., 2011, 96(4):043307-1-3.

[19] Liu F, Nunzi J M. Noble metal nanoparticle enhanced organic light emitting diodes [J]. SPIE, 2012, 8424:84243-1-5.

[20] Zheng T H, Choy W C H, Sun Y X. Nanoparticle-induced resonant tunneling behaviors in small molecule organic light-emitting devices [J]. Appl. Phys. Lett., 2009, 94(12):123303-1-3.

[21] Tanaka T, Totoki Y, Fujiki A, et al. Enhanced red-light emission by local plasmon coupling of Au nanorods in an organic light-emitting diode [J]. Appl. Phys. Exp., 2011, 4(3):032105-1-5.

[22] Xiao Y, Yang J P, Cheng P P, et al. Surface plasmon-enhanced electroluminescence in organic light-emitting diodes incorporating Au nanoparticles [J]. Appl. Phys. Lett., 2012, 100(1):013308-1-3.

[23] Reil F, Gerber S, Krenn J R, et al. Comparing the influence of gold nanorods and -discs on the spontaneous decay rate of Eu-chelate dye [J]. J. Opt. A:Pure Appl. Opt., 2007, 9(9):S437-S442.

[24] Yang K Y, Choi K C, Ahn C W. Surface plasmon-enhanced energy transfer in an organic light-emitting device structure [J]. Opt. Exp., 2009,17(14):11495-11504.

[25] Liu F, Nunzi J M. Phosphorescent organic light emitting diode efficiency enhancement using functionalized silver nanoparticles [J]. Appl. Phys. Lett., 2011, 99(12):123302-1-3.

[26] Kumar A, Srivastava R, Tyagi P, et al. Efficiency enhancement of organic light emitting diode via surface energy transfer between exciton and surface plasmon [J]. Org. Electron., 2012, 13(1):159-165.

[27] Kumar A, Srivastava R, Mehta D S, et al. Surface plasmon enhanced blue organic light emitting diode with nearly 100% fluorescence efficiency [J]. Org. Electron., 2012, 13(9):1750-1755.

[28] Liu F, Rao B S, Nunzi J M. A dye functionalized silver-silica core-shell nanoparticle organic light emitting diode [J]. Org. Electron., 2011, 12(7):1279-1284.

[29] Zheng T H, Choy W C H, Ho C L, et al. Improving efficiency roll-off in organic light emitting devices with a fluorescence-interlayer-phosphorescence emission architecture [J]. Appl. Phys. Lett., 2009, 95(13):133304-1-3.

[30] Kim R S, Zhu J F, Park J H, et al. E-beam deposited Ag-nanoparticles plasmonic organic solar cell and its absorption enhancement analysis using FDTD-based cylindrical nano-particle optical model [J]. Opt. Exp., 2012, 20(12):12649-12657.

[31] Zhuang T J, Su Z S, Liu Y D, et al. Enhanced performance of small molecular weight organic solar cells by incorporating Ag nanoparticles [J]. Chin. J. Lumin.(发光学报), 2011, 32(12):1266-1270 (in Chinese).

[32] Liu F, Nunzi J M. Enhanced organic light emitting diode and solar cell performances using silver nano-clusters [J]. Org. Electron., 2012, 13(9):1623-1632.

[33] Wang S Y, Borca-Tasciuc D A, Kaminski D A. The effect of particle vertical positioning on the absorption enhancement in plasmonic organic solar cells [J]. J. Appl. Phys., 2012, 111(12):124301-1-5.

[34] Westphalen M, Kreibig U, Rostalski J. Metal cluster enhanced organic solar cells [J]. Sol. Energ. Mat. Sol. C, 2000,61(1):97-105.

谢文法, 徐凯, 李杨, 闻雪梅, 张乐天. 利用金属纳米颗粒改善有机光电器件性能[J]. 发光学报, 2013, 34(5): 535. XIE Wen-fa, XU Kai, LI Yang, WEN Xue-mei, ZHANG Le-tian. High-efficiency Organic Photoelectric Devices with Metal Nanoparticles[J]. Chinese Journal of Luminescence, 2013, 34(5): 535.

本文已被 4 篇论文引用
被引统计数据来源于中国光学期刊网
引用该论文: TXT   |   EndNote

相关论文

加载中...

关于本站 Cookie 的使用提示

中国光学期刊网使用基于 cookie 的技术来更好地为您提供各项服务,点击此处了解我们的隐私策略。 如您需继续使用本网站,请您授权我们使用本地 cookie 来保存部分信息。
全站搜索
您最值得信赖的光电行业旗舰网络服务平台!