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1.
红色有机发光二极管   总被引:2,自引:2,他引:0  
制备了以芳香族二胺类衍生物TPD为空穴传输层、8-羟基喹啉铝Alq3掺杂红光染料DCJTB作为发光层LiF/Al为复合电极的红色发光二极管。研究了不同掺杂质量分数对器件发光光谱、亮度电流电压特性的影响。发现由于DCJTB的自极化作用,发光峰值位置有30nm的移动,当掺杂质量分数为0.2%和3%时,器件的最高亮度分别为17400cd/m^2和2900cd/m^2,20mA/cm^2时其亮度又分别为1080cd/m^2和150cd/m^2,量子效率分别为2%和0.5%。  相似文献   

2.
一种新型稀土配合物Tb(m-benzoicacid)3的发光特性的研究   总被引:9,自引:1,他引:8  
研究了一种新型稀土配合物发光材料 ,对苯甲酸铽Tb(m benzoicacid) 3 的发光特性。以这种材料为掺杂剂 ,聚乙烯咔唑 (PVK)为基质材料制备了薄膜器件。通过对光谱的研究 ,发现在掺杂体系中 ,PVK与Tb(m benzoicacid) 3 之间存在有效的能量传递 ,能量传递效率与铽配合物的掺杂浓度有关 ,随着Tb配合物的掺杂浓度的增加 ,Tb的特征发光在掺杂体系中所占比重也相应增加 ,而PVK的发光相对明显减弱 ,当Tb(m benzoicacid) 3 :PVK的质量比高于 2 0 %时 ,整个体系的发光变为以Tb的发光为主 ,而PVK的发光基本猝灭了。以PVK :Tb(m benzoicacid) 3 掺杂体系为发光层 ,八羟基喹啉铝 (Alq)为电子传输层 ,制备了双层电致发光器件 ,器件的结构为ITO/PVK :Tb(m benzoicacid) 3 /Alq/LiF/Al,该器件的电致发光为三价铽离子的特征发光 ,在 2 1V的电压下 ,亮度可达 311nt。  相似文献   

3.
采用有机小分子TBPe(2,5,8,11-tetratertbutylperylene)以不同比例掺入MEH-PPV(poly[2-methoxy-5-(2-ethylhexyloxy)-1,4-phenylenevinylene])作为发光层,研究了TBPe不同掺杂比例对器件性能的影响,进而对发光强度进行优化。对于所制备的ITO/PEDOT∶PSS/MEH-PPV/TBPe/Al有机电致发光器件,TBPe的最优蒸镀厚度为0.5 nm,其发光强度相对于标准器件提高了325%。ITO/PEDOT∶PSS/MEH-PPV∶TBPe/TBPe/Liq/Al有机电致发光器件的最优掺杂比例为MEH-PPV∶TBPe=100∶30(质量比),其发光亮度相比于未掺杂器件提高了44%。在上述器件的基础上增加Alq3层提高电子注入,分别制作了Liq和LiF作为修饰层的ITO/PEDOT∶PSS/MEH-PPV∶TBPe/TBPe/Alq3/Liq/Al和ITO/PEDOT∶PSS/MEH-PPV∶TBPe/TBPe/Alq3/LiF/Al多层器件,发光亮度分别达到4 162 cd/m2和4 701 cd/m2。所有器件的电致发光波长均为580 nm,为MEH-PPV的发光,TBPe的掺杂对MEH-PPV的发光起到了增强作用。  相似文献   

4.
新有机材料的电致发光的研究   总被引:1,自引:1,他引:0       下载免费PDF全文
采用新合成的有机材料-硅烷衍生物作为发光物质制备了发蓝、绿光的薄膜电致发光器件。其结构为glass/ITO/PVK SiH/Alq/Mg:Ag。分别测量了SCS-SiH,聚乙烯咔唑(PVK)薄膜的光致发光光谱以及器件的电致发光光谱。其中SCS-SiH薄膜的光致发光谱峰位置在496nm,有机器件的电致发光光谱的峰值为500nm。随着驱动电压的增加发光谱峰蓝移,其变化范围为25nm。在电流密度为89mA/cm^2下器件的发光亮度可达810cd/m^2。  相似文献   

5.
通过设计合理的微腔结构,制备了基于绿光染料C545t、黄光染料Rubrene、红光染料DCJTB的3种顶发射有机电致发光器件。研究了不同发光染料对顶发射器件的光谱的影响。研究表明,微腔结构对光谱具有窄化作用。绿光、黄光器件的发光峰波长并未随视角增大而明显变化,体现出良好的光谱角度性,而红光器件却出现了明显的光谱蓝移现象。绿光器件的最大功率效率为8.7 lm/W,当电流密度为45 m A/cm2时,亮度能达到7 205 cd/m2;黄光器件的电流效率最大值为11.5 cd/A,当电流密度为48 m A/cm2时,亮度可达到3 770 cd/m2;红光器件的电流效率最大能达到3.54 cd/A,当电流密度为50 m A/cm2时,可获得1 358 cd/m2的亮度。采用合适的发光材料以及合适的器件结构,不仅可以提高顶发射器件的色纯度及发光效率,还可以改善器件发光光谱的角度依赖性。  相似文献   

6.
利用电子传输层掺杂改善有机发光器件的效率   总被引:10,自引:6,他引:4  
杨惠山  程加力  赵毅  侯晶莹  刘式墉 《光子学报》2004,33(11):1364-1366
利用BCP掺杂到电子传输层Alq中,在掺杂层中阻挡了空穴的迁移,调整了空穴和电子的平衡,将激子有效地限制在发光层中发光,从而增加有机电致发光器件的效率.器件的最大电流效率在外加电压9 V时达到4.1 cd/A(掺杂浓度8%时),与一般未掺杂器件相比效率提高了2倍多.同时也减少空穴到达阴极,而减少发光淬灭.  相似文献   

7.
一种新型结构的黄光有机电致发光器件   总被引:5,自引:1,他引:4  
用有机荧光染料罗丹明B(Rhodamine B)作为掺杂剂,采用双量子阱结构制备了一种新型的黄光有机电致发光器件,器件结构及各层厚度为:ITO/CuPc(6nm)/NPB(20nm)/Alq3(3nm)/Alq3∶Rhodamine B(3nm)/Alq3(3nm)/Alq3∶Rhodamine B(3nm)/Alq3(30nm)/Liq(5nm)/Al(30nm)。研究发现Rhodamine B的掺杂浓度对该器件的发光亮度和发光效率有较大影响。当Rhodamine B的掺杂浓度为1.5wt%时,得到了最大电流效率1.526cd.A-1,最大发光亮度1309cd.m-2的黄光有机电致发光器件。由器件的电致光谱曲线,可以看到在发光层之间存在着Alq3向RhB传递能量的过程。由于量子阱的斯托克斯效应与RhB染料分子间的自极化作用,随着掺杂浓度的增加,λmax出现明显红移。  相似文献   

8.
发光效率及稳定性改善的有机薄膜电致发光器件   总被引:2,自引:1,他引:1       下载免费PDF全文
不久前,我们报导了以TPD为空穴传输层,Alq为电子传输兼发光层的双层薄膜电致发光器件,在定电流密度6mA/cm2连续驱动下,初始亮度106cd/m2下降至一半亮度的时间为120小时,而继续操作500小时,亮度仍有38cd/m2[1]。在这篇文章中,我们将报道一个在上述器件的空穴传输层TPD中掺杂而构成的新器件。这个新器件发光亮度和效率比原器件增加了50%,而稳定性增加了近10倍,初始亮度165cd/m2的半亮度寿命达1200小时。  相似文献   

9.
对常温下磷光染料Ir(ppy)3掺杂PVK薄膜的光致发光(PL)和电致发光(EL)特性进行了研究。器件结构为ITO/PEDOT:PSS/PVK:Ir(ppy)3/BCP/Alq3/Al。实验发现随磷光材料掺杂浓度的不同,器件的发光性能发生变化。当浓度适宜时,主体材料PVK的发光很弱,主要为Ir(ppy)3的磷光发射。通过L-I-V特性曲线的比较,掺杂浓度为5%的光电性能最好,说明器件在掺杂浓度为5%时效果最佳。  相似文献   

10.
红光量子点掺杂PVK体系的发光特性研究   总被引:1,自引:0,他引:1       下载免费PDF全文
刘志民  赵谡玲  徐征  高松  杨一帆 《物理学报》2014,63(9):97302-097302
无热处理制备了红光CdSe/ZnS量子点掺杂PVK的ITO/PVK:QDs/Alq3/Al结构电致发光器件.测试器件的发光光谱和电学特性等,研究了掺杂浓度(质量分数)对体系发光特性的影响,将非掺杂与掺杂体系做了比较,提出了优化掺杂体系的一些可行方案.量子点掺杂浓度较低时,主要为Alq3的发光;掺杂浓度为20%时,Alq3的发光得到抑制,红光发射最佳;继续增大掺杂浓度,QDs发光峰发生微弱红移,器件性能变差.与非掺杂体系相比,掺杂浓度合适的PVK:QDs体系大大提高了器件的稳定性.  相似文献   

11.
12.
A procedure is presented for the calculation of the double vibrational collision-induced absorption CO(2) (nu(3) = 1) + N(2) (nu(1) = 1) <-- CO(2) (nu(3) = 0) + N(2) (nu(1) = 0) on the basis of quantum lineshapes computed using an isotropic potential and dipole-induced dipole functions. The linestrengths and energies of the vibration-rotation transitions are treated explicitly for N(2), utilizing the HITRAN database for CO(2). The theoretical absorption profile is compared to recent experimental results. By narrowing the width of the individual lines contributing to the overall absorption profile relative to their values determined for N(2)-N(2) collision-induced absorption, excellent agreement between theory and experiment is obtained. Copyright 2000 Academic Press.  相似文献   

13.
Using pulsed perturbation-facilitated optical-optical double resonance (PFOODR) spectroscopy, the 2(3)Delta(g) state of (7)Li(2) (electronic configuration (varsigma(g)2s) (4ddelta(g)), effective principal quantum number n* = 4.101) has been observed and assigned. Molecular constants and a RKR potential energy curve were obtained. The major molecular constants are Copyright 2000 Academic Press.  相似文献   

14.
An analysis of the nu(17)-nu(4) difference bands near 800 cm(-1) of two isotopic species, (10)B(2)H(6) and (11)B(2)H(6), of diborane has been carried out using infrared spectra recorded with a resolution of ca. 0.003 cm(-1). In addition, the nu(17) band of (10)B(2)H(6) has been recorded and assigned. Since this band in (11)B(2)H(6) had already been studied (R. L. Sams, T. A. Blake, S. W. Sharpe, J.-M. Flaud, and W. J. Lafferty, J. Mol. Spectrosc. 191, 331-342 (1998)), it was possible to derive precise energy levels and Hamiltonian constants for the 4(1) vibrational states of both isotopic species. Copyright 2000 Academic Press.  相似文献   

15.
We have observed the rotational levels in the v = 2, 3, 5, 6, 7, and 8 vibrational manifolds of the 2(1)Delta(g) state of (7)Li(2) via the A(1)Sigma(+)(u) intermediate levels by DeltaLambda = 2 transitions. This violation of the DeltaLambda = 0, +/-1 selection rule is due to the interaction with the G(1)Pi(g) state. Band-by-band deperturbations of the G(1)Pi(g) approximately 2(1)Delta(g) (v(Pi), v(Delta)) = (11, 2), (12, 3), (15, 5), (16, 6), (18, 7), and (19, 8) bands have been performed. Deperturbed molecular constants and rotational-electronic interaction parameters are reported here. Copyright 2000 Academic Press.  相似文献   

16.
Absolute line intensities of (12)C(16)O(2) are experimentally measured for the first time for the (00(0)3)(I) <-- (10(0)0)(II) band at 5687.17 cm(-1) and the (00(0)3)(I) <-- (10(0)0)(I) band at 5584.39 cm(-1). The spectra were obtained using a Bomem DA8 Fourier transform spectrometer and a 25-m base-path White cell at NASA-Ames Research Center. The rotationless bandstrengths at a temperature of 296 K and the Herman-Wallis parameters are S(0)(vib) = 6.68(30) x 10(-25) cm(-1)/(molecule/cm(2)); A(1) = 1.4(9) x 10(-4), and A(2) = -1.1(5) x 10(-5) for the (00(0)3)(I) <-- (10(0)0)(II) band and S(0)(vib) = 6.07(22) x 10(-25) cm(-1)/(molecule/cm(2)); A(1) = 5.2(1.5) x 10(-4) and A(2) = -4.0(7) x 10(-5) for the (00(0)3)(I) <-- (10(0)0)(I) band.  相似文献   

17.
18.
王君  齐建起 《光散射学报》2009,21(3):226-231
本文主要研究了CO2的三种同位素分子16O12C16O , 16O12C17O ,16O13C17O 70 K~6000 K的总内配分函数 (TIPS)。在总内配分函数的计算中, 转动配分函数的计算采用了McDowell的解析式法, 振动配分函数则采用了简谐振动近似(HOA)获得。最后通过将两配分函数乘积近似计算得出TIPS, 并将其70~3000 K的数据和HITRAN04数据进行了比较, 发现所得结果和数据库符合的较好, 且其误差可以近似看成一条直线。并通过对误差的拟合修订了高温区(3000~6000 K)的计算数据, 给出了在高温下的较为准确的TIPS值。  相似文献   

19.
Using 0.002 cm(-1) resolution Fourier transform absorption spectra of an (17)O enriched ozone sample, an extensive analysis of the v(1)+v(3) bands of the (16)O(17)O(16)O and (16)O(16)O(17)O isotopomers of ozone has been performed for the first time. The experimental rotational levels of the (101) vibrational states were satisfactorily reproduced using a Hamiltonian matrix that takes into account the observed rovibrational resonances. More precisely, for (16)O(17)O(16)O, as for the other C(2v)-type ozone isotopomers, it was necessary to account for the Coriolis type resonances linking the (101) rotational levels with the levels of the (200) and (002) vibrational states and the Darling-Dennison interaction coupling the levels of (200) with those of (002). For the C(s)-type isotopomer, namely (16)O(16)O(17)O, as for (16)O(16)O(18)O and (16)O(18)O(18)O, it proved necessary to also account for an additional DeltaK(a)&equals+/-2 resonance involving the rotational levels from (101) and (002) (J.-M. Flaud and R. Bacis, Spectrochimica Acta Part A 54, 3-16 (1998)). Using a Hamiltonian matrix which takes these resonances explicitly into account, precise vibrational energies and rotational and coupling constants were deduced, leading to the following band centers: v(0)(v(1)+v(3))=2078.3496 cm(-1) for (16)O(17)O(16)O and v(0)(v(1)+v(3))=2098.8631 cm(-1) for (16)O(16)O(17)O. Copyright 2001 Academic Press.  相似文献   

20.
The nu(5) fundamental (C-C stretching) of CH(3)CD(3) shows a resolved torsional structure, caused by perturbations due mainly to the linear dependence of the torsional potential barrier on the normal coordinate Q(5). We were able to analyze this structure and to assign vibration-rotation transition wavenumbers for all five torsional components, classified according to the symmetry species of the G(18)((3)) extended molecular group. The torsional splitting pattern is qualitatively similar to that of a nondegenerate vibrational state with an even number of excited torsional quanta v(6). Explorative calculations show that the main perturber system should consist of the torsional components of the vibrational ground state correlating with v(6)=4 in the high barrier limit. The strength of the perturbation on the E(r0) torsional components of nu(5) increases rapidly with r, the E(40) component being the most affected. The observed transition wavenumbers can be reasonably fitted by a simplified model containing independent effective vibration-rotation parameters for the five different torsional components of nu(5), for both CH(3)CD(3) and (13)CH(3)CD(3). The trend of the determined values of the effective vibrational wavenumbers and rotational parameters over the torsional components supports the proposed vibration-torsion interaction mechanism, responsible for the observed torsional splittings. A strong anomaly observed in the rotational intensity distribution of nu(5) is discussed. Copyright 2001 Academic Press.  相似文献   

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