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1.
合成了三个以含氟苯基吡啶及吡啶基咪唑为配体的蓝色磷光电致发光铱配合物(P)2Ir(pym),其中主配体(P)分别为2-(2′,4′-二氟苯基)-4-甲基吡啶、2-(3′,4′-二氟苯基)-4-甲基吡啶、2-(3′,5′-二氟苯基)-4-甲基吡啶;辅助配体pymH为2-(2′-吡啶基)咪唑。通过元素分析、核磁、质谱、红外进行结构表征;用紫外可见吸收光谱、荧光光谱以及循环伏安进行其光谱学性能表征。以pymH取代辅助配体picH(2-吡啶甲酸)的方法,得到含吡啶基咪唑的铱配合物,在室温下二氯甲烷溶液中获得强的蓝光发射,其最大发光波长分别是461,480,490nm,其中(46fpmpy)Ir(pym)较经典蓝光磷光材料FIrpic蓝移5nm。  相似文献   

2.
合成并表征了以2-苯基吡啶为第一配体,水杨酸及其衍生物为第二配体,以铱为内核的新型配合物(ppy)2Ir(LX)(ppy=2-苯基吡啶,LX=水杨酸Sal、4甲基水杨酸MSal、4-三氟甲基水杨酸FSal)。对其分子结构、光物理性能及热稳定性进行了测试和分析。结果表明, 室温下在二氯甲烷溶液中(ppy)2Ir(LX)(LX= Sal, MSal, FSal)的吸收峰分别在270, 370, 450及484 nm附近,其中前2个吸收峰应归属于第一配体2-苯基吡啶的1π—π*跃迁和水杨酸配体到2-苯基吡啶的电荷转移跃迁,在450及484 nm附近的吸收峰,应该归属于金属到配体的电荷转移(1MLCT和3MLCT)跃迁和配体3π—π*跃迁的混合;其PL发射峰最大波长分别为520,522,510 nm;(ppy)2Ir(Sal)和(ppy)2Ir(MSal)的发射主要来源于三重态3MLCT的辐射跃迁,而(ppy)2Ir(FSal)的发射主要来源于水杨酸到2-苯基吡啶的电荷转移态的辐射跃迁,也有单重态1MLCT和三重态3MLCT的辐射跃迁的贡献。其量子效率分别为0.37,0.33,0.29,热分解温度为306~328 ℃。(ppy)2Ir(LX)是一组热稳定性较好的高效有机磷光材料,可用于有机电致发光器件中。  相似文献   

3.
新型苯基吡唑铱(Ⅲ)配合物的合成及光物理性能研究   总被引:1,自引:0,他引:1  
合成了4种新型铱配合物(ppz)2Ir(LX)(ppz=1-苯基吡唑,LX=2-(2’-羟基苯基)苯并噻唑(BTZ),2-(3’-甲基-2’-羟基苯基)苯并噻唑(3-MeBTZ),2-(4’-甲基-2’-羟基苯基)苯并噻唑(4-MeBTZ),2-(4’-三氟甲基-2’-羟基苯基)苯并噻唑(4-TfmBTZ)),并对其分子结构和光物理性能进行了表征。结果表明,4种配合物的最大发光峰分布在583~615 nm,并都在400 nm左右出现一个弱发射带。400 nm的弱发射被认为是金属离子微扰的辅助配体BTZ的单重态激子的辐射跃迁,长波段的光发射被认为是Ir(BTZ)的3MLCT三重态激子的辐射跃迁。而Ir(ppz)2的3MLCT的三重态激子在室温下被猝灭。最强激发带位于250~310 nm,表明这些配合物的发射主要源于ppz和BTZ配体的跃迁,而不是3MLCT跃迁。与Ir(ppz)3相比,不仅实现了室温磷光,也通过第二配体的修饰实现了对发光颜色的调制。  相似文献   

4.
设计开发了系列新型咪唑并吡啶类铱(Ⅲ)配合物(BIPy)2Ir(acac)、(PIPy)2Ir(acac)、 (4'-MPIPy)2-Ir(acac)。在化合物Ⅲ中,当R=Ph时得到(BIPy)2Ir(acac)材料,其中BIPy和acac分别表示2-(4-联苯基)咪唑并吡啶和乙酰丙酮。将(BIPy)2Ir(acac)掺杂在N,N'-二咔唑-(1,1'-联苯)-4,4'-二胺(CBP)中制备了高效OLEDs器件,器件的最大电流效率为26.7 cd/A,最大亮度为18 000 cd/cm2,色坐标为(0.32,0.60),是首次报道的新型苯基咪唑并吡啶类铱(Ⅲ)配合物绿色磷光材料。  相似文献   

5.
研究了一种新型红色磷光材料及其在有机电致磷光器件(OLEDs)中应用.在经典红色磷光材料btp2Ir(acac)的配体2-苯并噻吩吡啶的吡啶环的5位引入吸电子基团CF3,将辅助配体换为2-吡啶甲酸,成功研制出了双(2-(2′-苯并[b]噻吩基)吡啶)吡啶甲酸合铱配合物[(btfmp)2Ir(pic)].这种结构可以改变了原配合物的电子云分布,三氟甲基的引入将导致原分子的LUMO能下降,减小了HOMO与LUMO的能隙,引起发光峰位的红移,但2-吡啶甲酸又可引起发光蓝移,最终得到了最大峰位为637nm的饱和红光新的铱(Ⅲ)配合物,为通过简单配体修饰设计和制备新的有机磷光材料提供了一种简洁途径.  相似文献   

6.
以2',6'-二氟-2,3'-联吡啶(Hdfpypy)为主配体,空间位阻的3-乙酰基樟脑(Hacam)为辅助配体,合成了二-[2',6'-二氟-2,3'-联吡啶-N,C4'][3-乙酰基-1,7,7-三甲基-双环[2.2.1]2-庚酮-O,O]铱(Ⅲ)((dfpypy)2Ir(acam))。在四氢呋喃(THF)溶液中,配合物光致发光(PL)光谱最大发射峰值为466 nm,在487nm左右有一个不明显的肩峰,半峰宽为55 nm。配合物在脱气THF溶液中的PL量子效率为0.51。以(dfpypy)2Ir(acam)为发光层,制备了器件结构为ITO/HATCN(1 nm)/TAPC(40 nm)/(dfpypy)2Ir(acam)(10 nm)/BmpypB(40 nm)/LiF(1 nm)/Al(90 nm)的蓝色非掺杂磷光发光器件。电致发光(EL)光谱的最大发射峰值为474 nm。器件的启动电压为3.5 V。在电流密度为20 mA·cm-2时,CIE色坐标值为(0.17,0.29)。在驱动电压为11 V时,器件最大亮度为2 170 cd·m-2。在驱动电压为4.2 V时,最大功率效率为5.25 lm·W-1,最大亮度效率为6.45 cd·A-1。  相似文献   

7.
赵宝锋  唐怀军  余磊  王保争  文尚胜 《物理学报》2011,60(8):88502-088502
研究了掺杂离子型铱配合物的单发光层聚合物白光器件.根据二元互补色获得白光的原理,所采用离子型橙光材料为六氟磷酸合[二(2-(萘基-1-基)吡啶)(1-乙基-2-(9-(2-乙基己基)-9H-咔唑-3-基)-1H-咪唑并[4,5-f][1,10]菲啰啉)铱(Ⅲ)]([(npy)2Ir(c-phen)]PF6),天蓝光材料为二(2-(4,6-二氟苯基)吡啶-N,C(2))吡啶甲酰合铱(Firpic).器件结构为氧化铟锡/苯磺酸掺杂聚乙烯基二氧噻吩(40 nm)/发光 关键词: 聚合物发光二极管 白光 二元互补色 离子型铱配合物  相似文献   

8.
将双(2-(2'-苯并 噻吩基)-5-三氟甲基吡啶)乙酰丙酮合铱配合物 及电子传输材料PBD掺杂到基质材料PVK中,利用旋涂的方法制备聚合物磷光器件。铱配合物的掺杂质量分数分别为8%、10%、15%及18%,当掺杂质量分数为15%时获得了最大外量子效率4.5%,而同样结构的经典的红光材料(btp)2Ir(acac)的掺杂质量分数为4%时最大外量子效率为3.3%。可以看出,含三氟甲基的新铱配合物制备的聚合物器件具有明显的减少浓度猝灭效果,这可能由于三氟甲基基团改变了分子堆积状态,减少了分子间相互作用的结果。该聚合物器件最大发射峰位648 nm,色坐标为(0.71,0.29), 没有PVK的蓝光发射峰。  相似文献   

9.
利用1-苯基吡唑、吡啶三唑与水合三氯化铱反应合成了一种新型铱配合物Ir(2N)2(PZ),研究了配合物的吸收光谱、光致发光光谱以及光致发光效率。利用该材料作为磷光客体,掺杂到高分子主体材料中制作了电致发光器件,研究了其电致发光光谱。结果表明,该配合物在228,250,328nm处存在自旋允许的1π-π*跃迁;荧光光谱结果显示在470nm处有较强的磷光发射;电致发光光谱与光致发光光谱相比却发生较大程度的红移。  相似文献   

10.
采用不同的真空热梯度升华条件,获得了不同纯度的乙酰丙酮酸二(2-苯基吡啶)铱Ir(ppy)2(acac)。以不同纯度Ir(ppy)2(acac)为客体材料,制备了结构为ITO:MoO3/CBP/CBP:Ir(ppy)2(acac)/TPBi/LiF:Al的有机发光二极管(OLEDs),其中CBP和TPBi分别是4,4'-二(9-咔唑)联苯和1,3,5-三(1-苯基-1H-苯并咪唑-2-基)苯。评价了不同纯度磷光铱配合物制备的器件的电致发光性能,探索了磷光铱配合物纯度对器件性能的影响。结果表明:Ir(ppy)2(acac)升华后可以提高器件的稳定性,纯度高的材料可以在较低的掺杂浓度下获得较高的发光效率。  相似文献   

11.
Four new blue phosphorescent iridium complexes containing 2-(fluoro substituted phenyl)pyridine as the cyclometalated ligands and 2-(imidazol-2-yl)pyridine as an ancillary ligand have been synthesized and characterized. The complexes have the general structure (C^N)2Ir(pym), where C^N are cyclometalating ligands (e.g., 2-(2,4-difluorophenyl)pyridine (24f2ppyH), 2-(3,4-difluorophenyl)pyridine (34f2ppyH), 2-(3,5-difluorophenyl)pyridine (35f2ppyH), and 2-(3,4,5-trifluorophenyl)pyridine (345f3ppyH)), pym is 2-(imidazol-2-yl)pyridine (pymH). The absorption, emission, and cyclic voltammetry of the complexes were systematically investigated. The (46f2ppy)2Ir(pym) has been characterized using X-ray crystallography and the electronic ground state calculated using B3LYP density functional theory. The highest occupied molecular orbital (HOMO) consists of a mixture of pym ligand (83.7%) and Ir orbitals (12.1%), while the lowest occupied molecular orbital (LUMO) is mostly on f2ppy ligands (93.4%). By replacing the ancillary ligand pic with pym can finely tune emission of the iridium complexes, showing blue luminescence at a wavelength of 467-491 nm at room temperature in CH2Cl2.  相似文献   

12.
新型蓝色磷光嘧啶铱(Ⅲ)配合物的合成及发光性质   总被引:1,自引:1,他引:0       下载免费PDF全文
设计并合成了以2-(2,4-二氟苯基)嘧啶(DFPPM)为主配体的两种新型二嗪铱配合物 (Ph:苯基)和,用核磁共振(NMR)和质谱等方法对其进行了表征,并用紫外-可见吸收光谱和光致发光光谱对其光学性质进行了研究。光致发光光谱结果显示:配合物 的发射峰波长为472 nm和489 nm;而配合物 的发射峰波长为447 nm和472 nm,1931CIE色度坐标为(0.14,0.15),是一种深蓝色磷光材料。以 为客体材料、PVK为主体材料制备了电致发光器件,研究了其电致发光光谱。结果表明,电致发光光谱与光致发光光谱相比有较大程度的红移。  相似文献   

13.
Yu JN  Hao YY  Guo XX  Lei LP  Xu HX  Xu BS 《光谱学与光谱分析》2010,30(9):2424-2427
New heteroleptic iridium(III) complexes (ppz)2Ir(LX), which consist of two cyclometalated ligands ppz(1-phenylpyrazole) together with an ancillary ligand LX (LX= 2-(2'-hydroxylphenyl)benzothiazole (BTZ), 2-(3'-methyl-2'-hydroxylphenyl) benzothiazole (3-MeBTZ), 2-(4'-methyl-2'-hydroxylphenyl) benzothiazole (4-MeBTZ) and 2-(4'-Trifluoromethyl-2'hydroxylphenyl) benzothiazole (4-tfmBTZ)), were synthesized and characterized. The molecular structures and photophysical properties were characterized and analyzed comparatively. The results show that the four complexes have basically similar UV-Vis absorption spectra, fluorescence excitation and emission spectra. Their maximum emission peaks are located at 583-615 nm, and accompanied by a lower intensity emission band around 400 nm. The weak emissions around 400 nm are ascribed to the radi ation transition of single state excition from ancillary ligand BTZ perturbed by metallic ion, and light emission around long-wave-length to the radiation transition of 3MLCT of Ir(BTZ) fragment. While the triplet state 3 MLCT of Ir(ppz)2 fragment might be quenched at room temperature. For all complexes, the excitations with maximum efficiency are located at 250-310 nm, which indicates that main contributor to light emitting is ligand-centered absorption (1pi-pi*) of ppz and BTZ rather than 3MLCT transitions, and thus provides a striking evidence that there is intersystem crossing from 1pi-pi* state to 3MLCT state in these complexes. Compared with Ir(ppz)3, these complexes not only have stronger phosphorescence at room temperature but also their emission color can be tuned by modifying ancillary ligand.  相似文献   

14.
Two phosphorescent iridium(III) complexes (dfpmpy)2Ir(ppc) and (dfpmpy)2Ir(prz) [dfpmpy=2-(2′,4′-difluorophenyl)-4-methylpyridine, ppc=pipecolinate, prz=2-pyrazine carboxylate] were synthesized from the reaction of the chloro-bridged dimeric complex [(dfpmpy)2Ir(μ-Cl)]2 and the ancillary ligand. Their structures and photoluminescence properties were investigated and device performances for application in organic light-emitting diodes (OLEDs) were studied. The complexes adopt a distorted, octahedral geometry around the iridium metal, exhibiting cis C-C and trans N-N arrangements. The photoluminescent (PL) properties reveal that (dfpmpy)2Ir(ppc) emits in the blue-green region (λmax=497 nm), whereas (dfpmpy)2Ir(prz) shows red phosphorescence (λmax=543 nm) in the film state (5% wt. doped in PMMA). The (dfpmpy)2Ir(ppc)- and (dfpmpy)2Ir(prz)-based OLEDs exhibited sky-blue and greenish-yellow electroluminescence with similar current-voltage characteristics, repectively. Maximum current efficiency of (dfpmpy)2Ir(ppc) and (dfpmpy)2Ir(prz) were 4.4 and 7.4 cd/A, respectively. Maximum luminance values were approximately 10,000 cd/m2 for the both compounds.  相似文献   

15.
Four new bis-cyclometalated iridium(III) complexes, [Ir(btq) 2phen] [PF6] (3a), [Ir(btq) 2bpy] [PF6] (3b), [Ir(btq) 2dtbipy] [PF6] (3c) and [Ir(btq) 2pic] (3d) (btq?=?1-(benzo[b] thiophen-2-yl) isoquinoline, phen?=?1,10-phenanthroline, bpy?=?2,2′-bipyridine, dtbipy?=?4,4′-di-tert-butyl-2,2′-bipyridine, pic?=?picolinic acid) have been synthesized and fully characterized. The crystal structure of 3a has been determined by X-ray analysis. The photophysical and electrochemical properties of these new complexes 3a???3d have been studied. The photoluminescence spectra of all Ir(III) complexes exhibit deep-red emission maxima at 682, 682, 683 and 698 nm, respectively. The most representative molecular orbital energy-level diagrams and the lowest energy electronic transitions of 3a???3d have been calculated with density functional theory (DFT) and time-dependent DFT (TD???DFT). The results show that the pic ancillary ligand of complex 3d influences the absorption and emission energies with a further red-shift relative to other three complexes 3a???3c.  相似文献   

16.
合成了4种吡嗪铱配合物,用质谱和1H NMR对配合物结构进行了表征,通过紫外-可见吸收光谱和光致发光光谱对其光物理性质进行了研究。结果表明:4种铱配合物都出现了金属-配体电荷转移(MLCT)吸收峰。铱配合物1[(DFMPPZ)_2Ir(pic)]、2[(DFMPPZ)_2Ir Cl(PPh_3)]、3[(DFMPPZ)_2Ir(CN)(PPh_3)]和4[(DPPF)_2Ir(acac)]的发射波长分别为528,536,535,561 nm,都是潜在的黄、绿色磷光材料。以铱配合物4为客体材料,制备了结构为ITO/Mo O_3(1 nm)/CBP(35 nm)/CBP∶Ir(15 nm)/TPBi(50 nm)/Li F(1nm)/Al(100 nm)的一系列不同掺杂浓度的器件,器件的发射波长为567 nm,最大亮度达到32 110 cd·m-2,最大电流效率为32.4 cd·A-1,最大功率效率为28.2 lm·W-1。  相似文献   

17.
新型红色磷光铱配合物的合成与电致发光性能   总被引:1,自引:0,他引:1       下载免费PDF全文
设计并合成了含羟基配体8-苯并噻唑基2-萘酚(HNBT),并以其为辅助配体、2-苯基吡啶(ppy)为第一配体合成了红色磷光铱配合物Ir(ppy)2(NBT)。采用真空蒸镀的方法,以Ir(ppy)2(NBT)为发光中心制备了红色有机电致磷光器件,详细研究了配合物Ir(ppy)2(NBT)的热稳定性、光物理与电致发光性能。值得注意的是,配合物Ir(ppy)2(NBT)的发射谱图近似于高斯形状,只有一个位于614 nm的发射主峰,没有肩峰出现,且半峰宽仅为65 nm;此外,基于配合物Ir(ppy)2(NBT)的最佳器件的最大亮度和效率分别是6 400 cd/m2和4.53 cd/A。  相似文献   

18.
Ir(ppy)2(VPHD) (ppy=2-phenyl pyridine, VPHD=6-(4-vinylphenyl)-2,4-hexanedione) was copolymerized with methyl methacrylate (MMA). The copolymer had high quantum yield of 52.3±0.5% in dilute ethyl acetate solution, and the yield increased around 45% than that of the iridium monomer. The maximum emission peaks for the copolymers shifted from 515 to 489 nm while the iridium complex content was less than 0.005 mol% in the feed. The blue emission at 489 nm and the green emission at 520 nm were analyzed by Lorenz function. They are attributed to 1MLCT and 3MLCT emissions, respectively.  相似文献   

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