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1.
新型含氟聚苯撑乙烯的合成及电致发光性能   总被引:1,自引:0,他引:1  
李盛彪  张晔  牛巧莉  赵雷  范曲立  彭波  朱旭辉  曹镛  黄维 《化学学报》2006,64(24):2509-2514
设计并合成了两个不同烷氧基增溶的结构新颖的含氟聚苯撑乙烯Pa, Pb和共聚物Pc. 通过核磁共振和元素分析对其结构进行了表征, 通过热重分析、凝胶色谱测定了其热分解温度和分子量及分布; 紫外-可见吸收光谱仪和荧光分光光度计测得其吸收-发射光谱. 测量发现热失重曲线拐点温度超过400 ℃. 由2-乙基己基增溶的PaPc具有优异的溶解性, 固态荧光发射波长分别为499和585 nm, 相应比PPV和MEH-PPV稍有蓝移. 应用旋转涂膜的方法制作PaPc的双层器件(ITO/PEDOT/Polymer/Ba/Al), 电致发光波长分别为494和604 nm, 器件均具有较低的启动电压(4 V左右), 分别在24和15 V时达到最大亮度598和203 cd•m-2, 而此时电流密度分别为100和80 mA•cm-2.  相似文献   

2.
以2-苯基吡啶(ppy)为主配体, 2-(2-吡啶)苯并咪唑(pybiH)为辅助配体合成了一种室温蓝绿色磷光发射材料二(2-苯基吡啶)( 2-(2-吡啶)苯并咪唑)合铱(III) ((ppy)2Ir(pybi)), 通过傅里叶变换红外(FTIR)光谱、核磁共振氢谱(1H NMR)、质谱(MS)、元素分析对其结构进行了表征. 利用紫外-可见吸收光谱、荧光激发和发射光谱、循环伏安曲线, 结合含时密度泛函理论(TD-DFT)模拟计算研究了(ppy)2Ir(pybi)的光物理特性及能级结构, 并研究了其电致发光性能. (ppy)2Ir(pybi)的紫外吸收峰分别位于250, 295, 346和442 nm, 与理论模拟计算吻合得很好;(ppy)2Ir(pybi)为蓝绿光发射, 发光峰分别位于495 和518 nm; (ppy)2Ir(pybi) 的最高占据轨道(HOMO)和最低空轨道(LUMO)能级分别为-6.11和-3.43 eV, 光学带隙为2.68 eV; 以(ppy)2Ir(pybi)为掺杂剂, 4,4'-N,N'-二咔唑基联苯(CBP)为主体材料, 制备电致磷光器件, 电致发射峰位于508 nm, 最大亮度为8451 cd·m-2, 最大电流效率为17.6 cd·A-1. 这些研究为(ppy)2Ir(pybi)在有机电致发光领域的应用提供实验依据.  相似文献   

3.
合成了一种新型红色磷光配合物二(1-苯基咪唑) (1-苯基异喹啉)合铱((ppz)2Ir(piq)), 通过核磁共振氢谱(1H NMR)对其结构进行了表征, 通过紫外-可见(UV-Vis)吸收光谱、荧光光谱、低温磷光光谱、循环伏安法及含时密度泛函理论(TD-DFT)对其光物理性能及能级结构进行了研究. 制备了一系列基于(ppz)2Ir(piq)的电致发光器件, 研究了(ppz)2Ir(piq)的电致发光性质. 结果表明, (ppz)2Ir(piq)的UV-Vis 吸收峰主要位于296、342、395 和460 nm, 固态粉末的室温磷光发射峰位于618 nm, 在2-甲基四氢呋喃(2-MeTHF)溶液中其低温磷光发射峰位于598 nm, 其三线态能级(ET)为2.07 eV. (ppz)2Ir(piq)的最高占据轨道(HOMO), 其主要定域于配体ppz 和金属Ir(III)上, 最低未占据轨道(LUMO)主要定域于配体piq 上. (ppz)2Ir(piq)的HOMO和LUMO 能级分别为-5.92和-3.62 eV. 基于(ppz)2Ir(piq)电致发光器件的优化掺杂浓度为8%-12% (w), 最大电致发光谱峰位于616 nm,最大电流效率约10 cd·A-1, 最大功率效率为4.44 lm·W-1, 色坐标保持在(0.65, 0.35)附近, 是一种潜在的饱和红光磷光材料.  相似文献   

4.
用经典的方法合成了面式-三(2-(4-三氟甲基苯基)吡啶)合铱配合物(fac-Ir(tfmppy)3), 并得到了其晶体结构。在CH2Cl2溶液中Ir(tfmppy)3的发射光谱显示出了峰值位于525 nm的π→π*跃迁吸收以及金属到配体电荷转移(MLCT)吸收, 色坐标(CIE)为(0.31, 0.62), 量子效率计算为4.59%(以Ru(bpy)3]Cl2为参照)。以Ir(tfmppy)3为发光中心, 制备并研究了有机电致发光器件:ITO/TAPC (60 nm)/Ir(tfmppy)3 (x%):mCP (30 nm)/TPBi (60 nm)/LiF (1 nm)/Al (100 nm)。4%掺杂浓度的器件在4 197 cd·m-2的亮度下显示的最大电流效率为33.95 cd·A-1, 在12.7 V时的最大亮度为43 612 cd·m-2, 色坐标(CIE)为(0.31, 0.61)。利用瞬态电致发光法(transient electroluminescence (EL))、在1 300 (V·cm-1)1/2的电场强度下Ir(tfmppy)3配合物的电子迁移率测定为4.24×10-6 cm2·(V·s)-1。非常接近于常用的电子传输材料八羟基喹啉铝(Alq3)的电子迁移率。  相似文献   

5.
合成了一种新的蓝光材料4,4'-双(2,2-二(4-氟苯基)乙烯基)联苯(DFPVBi),用IR、1H-NMR、13C-NMR、19F-NMR及质谱确定了分子结构。采用紫外可见吸收光谱、循环伏安和荧光光谱研究了电子及荧光性能。HOMO及LUNO能分别为-5.77ev和-2.75eV。用DFPVBi制作的有机电致蓝光器件其光谱峰值波长为454nm,14.2V电压时达到最大亮度5872cd/m2,在10V时具有最大发光效率2.82cd/A。  相似文献   

6.
以2-(3-(2',4'-二氟苯基)苯基)吡啶(Hdfbppy)为环金属C^N配体,乙酰丙酮(Hacac)为辅助配体,设计合成了一种绿色磷光铱配合物(Ir(dfbppy)2(acac));研究了此配合物的光物理性质及其电致发光器件性能。室温下,配合物Ir(dfbppy)2(acac)的二氯甲烷溶液的最大发射波长为520nm,量子效率为71%,寿命为381ns。将此配合物掺杂在4,4'-N,N'-二咔唑基二联苯(CBP)中,作为发光层制备了有机发光二极管器件。结果显示,该器件在7.2V电压下呈现的最大亮度为68324cd·m-2,最大电流效率约为53cd·A-1,最大功率效率为37lm·W-1,色坐标为(0.33,0.62)。  相似文献   

7.
合成了锌(II)与3,4-吡啶二羧酸和1,10-邻菲啰啉形成的配位聚合物[Zn(PDC)(phen)]n (1) (H2PDC=3,4-吡啶二羧酸, phen=1,10-邻菲啰啉), 对其进行了元素分析、红外光谱和X射线单晶衍射表征, 测定了晶体结构. 该聚合物属单斜晶系, P2(1)/n空间群, a=0.77136 nm, b=1.9757(4) nm, c=1.0680(2) nm, β=95.36(3)°, V=1.6205(6) nm3, Z=4, Dc=1.683 Mg/m3, Mr=410.68, F(000)=832, μ=1.55 mm-1, 最终偏离因子R1=0.0608, wR2=0.0967. 该化合物中Zn原子与来自两个PDC的三个羧基氧原子, 另外一个PDC的吡啶氮原子, 以及phen的两个氮原子配位, 形成的ZnN3O3八面体通过PDC桥联形成二维层状网络结构. 此外还研究了该聚合物的热性质和荧光性质.  相似文献   

8.
合成了一种新型橙红色磷光材料铱的配合物(npp)2Ir(acac)(npp=2-(1-萘基)-4-苯基吡啶,acac=乙酰丙酮),通过 1H NMR、MS、元素分析对其结构进行了表征。以铱配合物(npp)2Ir(acac)作为发光体,制备了结构为ITO/Ir(5%):PVK(60 nm)/F-TBB(15 nm)/Alq3(15 nm)/LiF(1 nm)/Al(150 nm)的电致发光器件,研究了其电致发光性质。结果表明器件的最大发射波长在599 nm,最大发光亮度为3 841 cd·m-2,最大电流效率达3.9 cd·A-1。  相似文献   

9.
李亚娟  宋会花  王继业  韩占刚 《化学学报》2007,65(21):2401-2404
合成了锌(II)与3,4-吡啶二羧酸和1,10-邻菲啰啉形成的配位聚合物[Zn(PDC)(phen)]n (1) (H2PDC=3,4-吡啶二羧酸, phen=1,10-邻菲啰啉), 对其进行了元素分析、红外光谱和X射线单晶衍射表征, 测定了晶体结构. 该聚合物属单斜晶系, P2(1)/n空间群, a=0.77136 nm, b=1.9757(4) nm, c=1.0680(2) nm, β=95.36(3)°, V=1.6205(6) nm3, Z=4, Dc=1.683 Mg/m3, Mr=410.68, F(000)=832, μ=1.55 mm-1, 最终偏离因子R1=0.0608, wR2=0.0967. 该化合物中Zn原子与来自两个PDC的三个羧基氧原子, 另外一个PDC的吡啶氮原子, 以及phen的两个氮原子配位, 形成的ZnN3O3八面体通过PDC桥联形成二维层状网络结构. 此外还研究了该聚合物的热性质和荧光性质.  相似文献   

10.
对管线式介质阻挡放电中的甲醛脱除进行了实验研究, 测量了介质阻挡放电产生的OH (A2Σ→X 2Π, 0-0)自由基发射光谱. 研究了在一个大气压下不同放电峰值电压、放电频率、添加氩气和氧气时甲醛脱除率与OH自由基发射光谱强度的变化关系. 实验结果表明: 在氮气含甲醛体系中, 提高放电峰值电压、放电频率和增大氩气含量时, 甲醛脱除率随OH (A2Σ→X 2Π, 0-0)自由基发射光谱强度的增强而提高; 当在氮气含甲醛体系中增大氧气含量时, 甲醛脱除率随OH (A2Σ→X 2Π, 0-0)自由基发射光谱强度的减弱而降低. 在11.5 kV放电峰值电压和9 kHz放电频率下, 氮气含甲醛体系中甲醛脱除率达93.8%.  相似文献   

11.
用新的路径成功地合成了N,N -四(间联苯基)-4,4 -联苯二胺(m TBPBz).以m TBPBz作为正孔传送材料,探讨了它在有机电致发光器件中的应用.制作了结构为玻璃基板/ITO阳极(130nm)/m TBPBz(40nm)/Alq(60nm)/LiF(0.5nm)/Al阴极(100nm)的器件.结果显示:该有机电致发光器件的绿色发光来源于Alq层.10V时,它的最大亮度为9486cd/m2.证明了m TBPBz具有正孔传送性能,可作为电致发光材料使用.  相似文献   

12.
利用两种Cs基衍生物碳酸铯(Cs2CO3)和醋酸铯(CH3COOCs)作为n型掺杂剂掺入到一种新型的电子传输材料2,9-二(2-萘基)-4,7-二苯基-1,10-菲啰啉(NBPhen)中来提高有机发光二极管(OLEDs)的效率.实验结果表明:器件的驱动电压明显降低,并且优化后得到的Cs基n型掺杂器件(ITO/β-NPB/CBP:5%(w)N-BDAVBi/NBPhen/NBPhen:Cs2CO3(or CH3COOCs)/Al)呈现出较好的电致发光性能,在14 V时电流密度分别为551.80和527.88 mA·cm-2,对应的亮度分别达到39750和39820 cd·m-2,电流效率在亮度为10000 cd·m-2时分别为14.60 cd·A-1(Cs2CO3掺杂)和14.40 cd·A-1(CH3COOCs掺杂),这些参数明显优于传统器件的发光性能(ITO/β-NPB/CBP:5%(w)N-BDAVBi/NBPhen/Cs2CO3/Al,其在14 V时电流密度为312.39 mA·cm-2,对应的亮度为25190 cd·m-2;电流效率在亮度为10000 cd·m-2时为9.45 cd·A-1.此外,基于有机半导体掺杂原理和器件的能级结构对n型掺杂器件效率提高的原因进行了分析.  相似文献   

13.
An N‐phenylcarbazole‐containing poly(p‐phenylenevinylene) (PPV), poly[(2‐(4′‐carbazol‐9‐yl‐phenyl)‐5‐octyloxy‐1,4‐phenylenevinylene)‐alt‐(2‐(2′‐ethylhexyloxy)‐5‐methoxy‐1,4‐phenylenevinylene)] (Cz‐PPV), was synthesized, and its optical, electrochemical, and electroluminescent properties were studied. The molecular structures of the key intermediates, the carbazole‐containing boronic ester and the dialdehyde monomer, were crystallographically characterized. The polymer was soluble in common organic solvents and exhibited good thermal stability with a 5% weight loss at temperatures above 420 °C in nitrogen. A cyclic voltammogram showed the oxidation peak potentials of both the pendant carbazole group and the PPV main chain, indicating that the hole‐injection ability of the polymer would be improved by the introduction of the carbazole‐functional group. A single‐layer light‐emitting diode (LED) with a simple configuration of indium tin oxide (ITO)/Cz‐PPV (80 nm)/Ca/Al exhibited a bright yellow emission with a brightness of 1560 cd/m2 at a bias of 11 V and a current density of 565 mA/cm2. A double‐layer LED device with the configuration of ITO/poly(3,4‐ethylenedioxy‐2,5‐thiophene):poly (styrenesulfonic acid) (60 nm)/Cz‐PPV (80 nm)/Ca/Al gave a low turn‐on voltage at 3 V and a maximum brightness of 6600 cd/m2 at a bias of 8 V. The maximum electroluminescent efficiency corresponding to the double‐layer device was 1.15 cd/A, 0.42 lm/W, and 0.5%. The desired electroluminescence results demonstrated that the incorporation of hole‐transporting functional groups into the PPVs was effective for enhancing the electroluminescent performance. © 2005 Wiley Periodicals, Inc. J Polym Sci Part A: Polym Chem 43: 5765–5773, 2005  相似文献   

14.
We report a new route for the design of efficient soluble electroluminescent PPV-based copolymers bearing electron-deficient oxadiazole (OXD) moieties on side chains. The introduction of OXD through a long alkylene spacer with PPV backbone provides a molecular dispersion of OXD in the film; both the side chain OXD and the main chain PPV do retain their own electron-transport and emissive properties, respectively. The use of phenylene vinylene derivatives with asymmetric and branched substituents and a long spacer provides solubility for ease of device fabrication as well as amorphous structure to allow a well-mixing of OXD groups with the main chains. By properly adjusting the OXD content through copolymerization, we can tailor the chemical structure of electroluminescent material to give a balance of hole- and electron injections for various metal cathodes, such that the quantum efficiency is significantly improved and the turn-on voltage is reduced for the devices with aluminum and calcium. For the device with calcium fabricated in open air, a maximum brightness of 15000 cd/m(2) at 15 V/100 nm and a maximum luminance efficiency of 2.27 cd/A can be obtained, respectively, about 30 times brighter and 9.4 times more efficient than those with the corresponding homopolymer, poly[2-methoxy-5-(2'-ethylhexyloxy)-p-phenylenevinylene] (MEH-PPV). The use of physical blends to simulate the copolymers provides no significant improvement, since phase-separation structures appear, causing an inefficient utilization of OXD and sometimes voltage-dependent emission spectra. The present route permits a fabrication of single layer PLED with high brightness, high efficiency, and low turn-on voltage.  相似文献   

15.
刘坚  韦春 《无机化学学报》2012,28(2):398-404
合成了一种含有载流子传输基新的铱配合物(BPPBI)2Ir(ECTFBD)[HBPPBI:1-苯基-2-(4-联苯基)苯并咪唑,HECTFBD:1-(9-乙基-3-咔唑基)-4,4,4-三氟-1,3-丁二酮],其结构和组成经核磁共振氢谱和元素分析所证实。研究了这种铱配合物二氯甲烷溶液的光物理和电化学性质。制作了基于这种铱配合物的电致磷光器件。器件结构是ITO/MoO3(10 nm)/NPB(80 nm)/CBP:x%(BPPBI)2Ir(ECTFBD)(20 nm)/TPBi(45 nm)/LiF/Al[x%:质量百分比为4%和7%的掺杂浓度;NPB:N4,N4′-二(1-萘基)-N4,N4′-二苯基-4,4′-联苯二胺,CBP:4,4′-二(9-咔唑基)联苯,TPBi:1,3,5-三(2-(1-苯基)苯并咪唑基)苯]。这些器件显示出深黄色的发射。对于7%掺杂浓度器件,最大的电流效率和最大发光亮度分别是5.2 cd.A-1和8 690 cd.m-2。  相似文献   

16.
Two novel copoly(p‐phenylene)s ( P1 – P2 ) containing bipolar groups (12.8 and 6.8 mol %, respectively), directly linked hole transporting triphenylamine and electron transporting aromatic 1,2,4‐triazole, were synthesized to enhance electroluminescence (EL) of poly(p‐phenylene vinylene) (PPV) derivatives. The bipolar groups not only enhance thermal stability but also promote electron affinity and hole affinity of the resulting copoly(p‐phenylene)s. Blending the bipolar copoly‐(p‐phenylene)s ( P1 – P2 ) with PPV derivatives ( d6‐PPV ) as an emitting layer effectively improve the emission efficiency of its electroluminescent devices [indium tin oxide (ITO)/poly(3,4‐ethylenedioxythiophene) (PEDOT):poly(styrenesulfonate) (PSS)/polymer blend/Ca (50 nm)/Al (100 nm)]. The maximum luminance and maximum luminance efficiency were significantly enhanced from 310 cd m?2 and 0.03 cd A?1 ( d6‐PPV ‐based device) to 1450 cd m?2 and 0.20 cd A?1 (blend device with d6‐PPV / P1 = 96/4 containing ~0.5 wt % of bipolar groups), respectively. Our results demonstrate the efficacy of the copoly(p‐phenylene)s with bipolar groups in enhancing EL of PPV derivatives. © 2010 Wiley Periodicals, Inc. J Polym Sci Part A: Polym Chem, 2010  相似文献   

17.
A series of new poly(p‐phenylene vinylene) derivatives with different dendritic pendants—poly{2‐[3′,5′‐bis(2″‐ethylhexyloxy)benzyloxy]‐1,4‐phenylenevinylene} (BE–PPV), poly{2‐[3′,5′‐bis(3″,7″‐dimethyl)octyloxy]‐1,4‐phenylenevinylene} (BD–PPV), poly(2‐{3′,5′‐bis[3″,5″‐bis(2?‐ethylhexyloxy)benzyloxy]benzyloxy}‐1,4‐phenylenevinylene) (BBE–PPV), poly(2‐{3′,5′‐bis[3″,5″‐bis(3?,7?‐dimethyloctyloxy)benzyloxy]benzyloxy}‐1,4‐phenylenevinylene) (BBD–PPV), and poly[(2‐{3′,5′‐bis[3″,5″‐bis(2?‐ethylhexyloxy)benzyloxy]benzyloxy}‐1,4‐phenylenevinylene)‐co‐(2‐{3′,5′‐bis[3″,5″‐bis(3?,7?‐dimethyloctyloxy)benzyloxy]benzyloxy}‐1,4‐phenylenevinylene)] (BBE‐co‐BBD–PPV; 1:1)—were successfully synthesized according to the Gilch route. The structures and properties of the monomers and the resulting conjugated polymers were characterized with 1H and 13C NMR, elemental analysis, gel permeation chromatography, thermogravimetric analysis, ultraviolet–visible absorption spectroscopy, photoluminescence, and electroluminescence spectroscopy. The obtained polymers possessed excellent solubility in common solvents and good thermal stability, with a 5% weight loss temperature of more than 328 °C. The weight‐average molecular weights and polydispersity indices of BE–PPV, BD–PPV, BBE–PPV, BBD–PPV, and BBE‐co‐BBD–PPV (1:1) were in the range of 1.33–2.28 × 105 and 1.35–1.53, respectively. Double‐layer light‐emitting diodes (LEDs) with the configuration of indium tin oxide/polymer/tris(8‐hydroxyquinoline) aluminum/Mg:Ag/Ag devices were fabricated, and they emitted green‐yellow light. The turn‐on voltages of BE–PPV, BD–PPV, BBE–PPV, BBD–PPV, and BBE‐co‐BBD–PPV (1:1) were approximately 5.6, 5.9, 5.5, 5.2, and 4.8 V, respectively. The LED devices of BE–PPV and BD–PPV possessed the highest electroluminescent performance; they exhibited maximum luminance with about 860 cd/m2 at 12.8 V and 651 cd/m2 at 13 V, respectively. The maximum luminescence efficiency of BE–PPV and BD–PPV was in the range of 0.37–0.40 cd/A. © 2005 Wiley Periodicals, Inc. J Polym Sci Part A: Polym Chem 43: 3126–3140, 2005  相似文献   

18.
合成了一种含双极性9,9-双(9-乙基咔唑-3-基)-4,5-二氮芴(ECAF)配体的新型三羰基铼配合物Re(CO)3(ECAF)Cl,通过核磁共振氢谱及高分辨质谱对其结构进行了确定。以含有4,5-二氮-9,9-螺二芴(SB)配体的铼配合物Re(CO)3(SB)Cl作为参比物,对比研究了其热稳定性及光电性能。结果表明,与参比物的分解温度(366℃)相比,配合物Re(CO)3(ECAF)Cl有极好的热稳定性(热分解温度419℃)。由于富电子咔唑基团导致的能隙增大,相比参比物的发光波长(572 nm),Re(CO)3(ECAF)Cl的发光波长蓝移至565 nm。Re(CO)3(ECAF)Cl的发光量子效率(39%)稍高于参比物(37%)。以旋涂法制成电致发光器件后,基于Re(CO)3(ECAF)Cl器件的最佳掺杂浓度(质量分数)高达30%,是基于参比物器件的2.4倍,而且开启电压低至2.9 V,明显比参比物器件的4.0 V低,说明ECAF配体能有效抑制发光浓度淬灭,且明显改善了铼配合物的载流子传输性能。基于Re(CO)3(ECAF)Cl器件的最大电流效率及最大外量子效率分别为8.2 cd·A^-1和3.0%,低于参比物器件的9.7 cd·A^-1和3.9%。  相似文献   

19.

In this study, a new electroluminescent poly(2‐decyloxy‐5‐(4′‐tert‐butylphenyl)‐1,4‐phenylene‐vinylene) (designated as DBP‐PPV) with no tolane‐bis–benzyl (TBB) structure defect was prepared by dehydrohalogenation of 1,4‐bisbromomethyl‐2‐decyloxy‐5‐(4′‐tert‐butyl‐phenyl) benzene (as monomer). The monomer bearing decyloxy and 4′‐tert‐butylphenyl substituents was synthesized via alkylation, bromination and Suzuki coupling reactions. The two asymmetric substituents of the monomer can suppress the formation of TBB defect during polymerization process and make the resultant polymer be soluble in common organic solvents. The structure and properties of DBP‐PPV were examined by 1H‐NMR, FT‐IR, UV/Vis, TGA and photoluminescence (PL) analyses. Moreover, with the DBP‐PPV acting as a light‐emitting polymer, a device with sequential lamination of ITO/PEDOT/DBP‐PPV/Ca/Ag was fabricated. The electroluminescence (EL) spectrum of the device showed a maximum emission at around 546 nm, corresponding to a yellowish‐green light. The device showed a turn‐on voltage of about 8.4 V and a maximum luminescence efficiency of 0.11 cd/A at an applied voltage of 12 V.  相似文献   

20.
Polymericlightemittingdiodes(LEDs)havedrawnconsiderableattentionfortheirpossibleapplicationsinlargeareaflatpaneldisplaysincethe1990swhenagroupatCambridgeUniversity[1]reportedthatpoly(pphenylenevinylene)(PPV)exhibitselectroluminescence.Significantimprovement…  相似文献   

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