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渡越时间方法测量系统研究 被引量:1

Measurement System of Time-of-Flight Method
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摘要 载流子迁移率是半导体材料的一项重要参数,而有机材料的载流子迁移率较低,限制了一些传统方法的使用。文章建立了一套用于测量有机材料载流子迁移率的渡越时间(TOF)法实验系统,着重介绍了实验系统中各元件的作用及要求,实验关键技术参数等。该实验系统的主要特点是把激发光源同时作为外触发光源,消除实验中杂散信号的干扰,得到清晰的信号。同时利用实验系统对无机材料Se,有机共轭聚合物材料MEH-PPV的载流子迁移率进行测量,结果表明:该实验系统组建方便,快捷,可以较好用于测量有机材料低载流子迁移率,具有一定的实用价值。 Carrier mobility is an important parameter for semiconductor materials, however, the low carrier mobility of the organic materials limits the applications of some conventional methods in these materials. In this paper, the time-of-flight (TOF) experiment system is developed to measure the carrier mobility of organic materials. The role and requirements of each component in the experiment system and the key technical parameters of the experiment are introduced. The main feature of the experiment system is that a laser is employed as an excitation light source at the same time as the external trigger mode, to eliminate the disturbance from stray signal and get a clear signal. The carrier mobilities of the inorganic material Se and the organic conjugated polymer material MEH-PPV were characterized by this experiment system, which confirmed it is rational and success. Experimental results show that our experiment system could be set up fast and conveniently in measuring the low carrier mobility of organic materials. It will be valuable for practical applications.
出处 《液晶与显示》 CAS CSCD 北大核心 2013年第5期810-814,共5页 Chinese Journal of Liquid Crystals and Displays
关键词 渡越时间 载流子迁移率 SE MEH—PPV TOF carrier mobility Se MEH-PPV
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参考文献9

  • 1Lin L B, Jenekhe S A, Borsenberger P M. High electron mobility in bipolar composites of organic molecules [ J]. Appl. Phys. Lett. , 1996, 69(3):3495-3497.
  • 2Borsenberger P M, Pautmeier L, Bassler H. Charge transport in disordered molecular solids [J]. J. Chem. Phys, 1991, 94(8) :5447-5454.
  • 3李颜涛,陈红,褚明辉,刘星元.耦合微腔结构的有机电致发光器件(英文)[J].发光学报,2011,32(11):1186-1191. 被引量:4
  • 4Spear W E. Transit time measurements of charge carriers in amorphous selenium films [ J]. Proc. Phys. Soc. B, 1957,70(7):669 675.
  • 5陈磊,李贵芳,陈玉焕,王明霞,闫东航,张吉东,秦大山.方波驱动法测定Alq_3的电子迁移率[J].发光学报,2012,33(9):954-959. 被引量:2
  • 6Bassler H. Charge transport in disordered organic photoconductors-a monte-carlo simulation study [J]. Phys. Sta- tus. Solidi B, 1993, 175(1):15-56.
  • 7Spear W E. Drift mobility techniques for the study of electrical transport properties in insulating solids [ J]. J. Non- Cryst. Solids. , 1969,1(3) :197-214.
  • 8Scher H, Montroll E W. Anomalous transit-time dispersion in amorphous solids [ J]. Phys. Rev. B, 1975,12(6): 2455-2477.
  • 9李青,赵娟,王琦,于军胜.间隔层对双发光层白色有机电致发光器件性能的影响[J].发光学报,2012,33(1):45-50. 被引量:7

二级参考文献53

  • 1Pavesi L, Mulloni V. All porous silicon microcavities: growth and physics [J]. J. Lumin. , 1999, 80(1-4) :43-52.
  • 2Shimada R, Xie J, Avrutin V, et al. Cavity polaritons in ZnO-based hybrid microcavities [J]. Appl. Phys. Lett. , 2008, 92( 1 ) :011127-1-3.
  • 3Plakhotnik T. Simple microeavity for single-photon generation [J]. Opt. Exp. , 2005, 13(8) :3049-3054.
  • 4Streubel K, Helin U, Oskarsson V, et al. High-brightness visible (660 nm) resonant-cavity light-emitting diode [ J ]. IEEE Photon. Technol. Left. , 1998, 10(12) :1685-1687.
  • 5Degen C, Fischer I, Els~lBer W. Transverse modes in oxide confined VCSELs : Influence of pump profile, spatial hole bur- ning, and thermal effects [J]. Opt. Exp. , 1999, 5(3) :38-47.
  • 6Jeong S M, Takanishi Y, Ishikawa K, et al. Sharply directed emission in microcavity organic light-emitting diodes with a cholesteric liquid crystal film [ J ]. Opt. Comm. , 2007, 273 ( 1 ) : 167-172.
  • 7Ma F, Liu X, Zhang C, et al. Design and fabrication of pure green color microcavity organic light emitting device [ J ]. Jpn. J. Appl. Phys., 2006, 45(12) :9224-9227.
  • 8Stanley R P, Houdr6 R, Oesterle U, et al. Coupled semiconductor microcavities [J]. Appl. Phys. Lett., 1994, 65(16) : 2093 -2095.
  • 9Michler P, Hilpert M, Reiner G. Dynamics of dual-wavelength emission from a coupled semiconductor microcavity laser [J]. Appl. Phys. Lett. , 1997,70(16)2073-2075.
  • 10Bienstman P, Baets R. The RC2LED:A novel resonant-cavity LED design using a symmetric resonant cavity in the outcoupling reflector [J]. IEEE J. Quantum Electron. , 2000, 36(6):669-673.

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