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1、精品论文Effects of ultraviolet light on electrical properties ofPEDOT:PSS film5Xing Yingjie, Qian Minfang, Wang Guiwei, Zhang Gengmin, Guo Dengzhu(Department of Electronics, Peking University, Beijing 100871)Abstract: The performance of poly(3,4-ethylenedioxythiophene):poly(styrenesulfonate) (PEDOT:PSS)
2、 film is highly dependent on its in organic optoelectronic devices Conductivity and work function. Significant improvements of conductivity and work function are achieved by irradiation of10PEDOT:PSS film in vacuum under 254 nm ultraviolet light. The mechanism for such an improvementis investigated
3、by current-voltage measurement, X-ray photo electron energy spectrum and atomic force microscopy. A surface degradation and the composition change are found after ultraviolet irradiation. The height of the injection barrier in a hole-only device fabricated with UV-treatedPEDOT:PSS film is decreased
4、effectively. Our results reveal that UV treatment is capable of modifying15the conductivity and work function of PEDOT:PSS film thus allowing them be tuned to the device application.Keywords: Physical electronics; conductivity; work function0Introduction20Poly(3,4-ethylenedioxythiophene):poly(styren
5、esulfonate)(PEDOT:PSS)isacommon material for electrode or hole transport layer in various organic optoelectronic devices.1 The PEDOT:PSS colloidal composite combines insoluble conjugated polymer PEDOT and charge-balancing counterion polyelectrolyte PSS in water, and thermally stable PEDOT:PSS layer
6、can be formed from commercial aqueous PEDOT:PSS solution by spin coating on hard substrate25or printing technique on large area flexible film. The structure model of as-prepared PEDOT:PSS film is described as a lot of PEDOT-rich clusters separated by insulating PSS lamella.2 Although comparable-good
7、 conductivity and high transparency in PEDOT:PSS film are easily obtained, an organic optoelectronic device for practical application requires better property of PEDOT:PSSfilm, for example, higher efficiency and longer life time of polymer solar cell after proper30treatment of PEDOT:PSS film.3-5Cond
8、uctivity and work function are two most important properties of PEDOT:PSS. A PEDOT:PSS layer with high conductivity is highly desired in most fields in organic electronics and many methods have been used to improve the conductivity of PEDOT:PSS film. Anisotropic conductivities,2 10-3 S/cm for parall
9、el direction (parallel to the film surface) and 10-6 S/cm for35perpendicular direction (perpendicular to the film surface), were measured in as-prepared PEDOT:PSS film prepared from commercial PEDOT:PSS solution (Baytron P VP AI 4083), which is frequently used as a hole transport layer in devices of
10、 organic light emitting diode and organic solar cell. A common technique to enhance the conductivity of PEDOT:PSS film is by addition of small amount of polar solvent or high boiling point alcohol into the commercial40PEDOT:PSS solution, such as dimethylsulfoxide,3 glycerol,6 or sorbitol.7 The forma
11、tion of auniformly conductive network was believed as the reason for the conductivity improvement by three order of magnitude because morphology change and aggregation of PEDOT-rich colloidal particles were observed in PEDOT:PSS film.3,7 Recently, a different way to improve the conductivity of PEDOT
12、:PSS film is developed, which employs a wet post-treatment to selective45removal of PSS from the as-prepared PEDOT:PSS film. Kim et al reported a large increase in theFoundations: MOST of China (Grant Nos 2012CB932701, 2011CB933001), National Natural Science Foundation of China (Grant Nos 61076057,
13、61171023), the Specialized Research Fund for the Doctoral Program of High Education (No. 20090001120024).Brief author introduction:Xing Yingjie, (1970-), Male, Assiciate Professor, Physical electronics. E-mail:xingyj- 13 -conductivity after immersing PEDOT:PSS film in an ethylene glycol bath.8 The h
14、ighest conductivity (3065 S/cm) was observed from H2SO4 post-treated and water-rinsed PEDOT:PSS film (with Clevios PH1000 for electrode application).9 Effectively replacement of PSS- ions withHSO4- caused phase separation between PSS and PEDOT chains, resulting in an indium tin oxide50(ITO)-comparab
15、le conductivity.5 In this case, much less content of PSS in post-treatedPEDOT:PSS film means that much less transport barrier surroundingPEDOT-rich clusters.As a widely used hole injection layer in organic optoelectronic device, PEDOT:PSS film with high work function is needed to match the highest o
16、ccupied molecular orbital (HOMO) energy of the hole transport material. The value of work function of PEDOT:PSS film varies between 4.9 eV55to 5.5 eV 3,4,6,7 depending on the preparation method and measuring technique. It is found that athin PSS-rich layer (thickness about 3.5 nm) always locates at
17、the surface of as-prepared PEDOT:PSS film because of vertical phase separation during the period of film formation.10 Because PSS has a higher the work function than PEDOT, the PEDOT:PSS films treated upon above additive methods suffer a small decrease in work function (0.1 0.3 eV),3,7 which will60i
18、ncrease the injection barrier height. Higher work function could be obtained by other methods introducing more vertical phase separation in PEDOT:PSS films, such as by addition of perfluorinated ionomer 11 or by polar-solvent vapor annealing,12 resulting in a perfluorinated ionomer-rich or PSS surfa
19、ce layer.Contrast to above “wet” methods, treatment by ultraviolet (UV)-ozone exposure or UV light65irradiation is effective and “dry” to modify the work function of PEDOT:PSS film. The increase in work function of PEDOT:PSS film (0.2 - 0.4 eV) after UV-ozone exposure 13 or 365 nm UV irradiation 14
20、was reported, and enhanced performance in organic optoelectronic devices was achieved with the help of UV-treated PEDOT:PSS, which proved the importance of higher work function of PEDOT:PSS film.13,15 Unfortunately, worse conductivity or little changed70conductance were observed from PEDOT:PSS film
21、after UV-ozone exposure or 365 nm UV irradiation.14,16 Recently, the study of the effect of UV treatment on PEDOT:PSS film mainly focuses on whether the better hole injection in organic light emitting diodes comes from a lower injection barrier due to the increased work function of PEDOT:PSS film. T
22、wo mechanisms are proposed to explain the improvement of hole injection. Anzenbachers groups suggested a smaller75injectionbarrierbetweenN,N-diphenyl-N,N-bis-(1-naphthyl)-1-1-biphenyl-4,4-diamine (-NPD) and PEDOT:PSS after UV-Ozone treatment.14,17 A different model was given by Helander et al. with
23、results measured via in situ photoelectron spectroscopy.18 They proposed that because of a surface dipole generated between UV-Ozone treated PEDOT:PSS and -NPD, the work function improvement of PEDOT:PSS did not bring a decrease of injection barrier as80expected. Understanding and better controlling
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