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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >The Effect of Different Neutral Ligands on Photoluminescence and Electroluminescence Properties of Ternary Terbium Complexes
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The Effect of Different Neutral Ligands on Photoluminescence and Electroluminescence Properties of Ternary Terbium Complexes

机译:不同中性配体对三元b配合物的光致发光和电致发光性质的影响

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Three terbium complexes Tb(tba-PMP)_3(TPPO) (A),Tb(tba-PMP)_3(H_2O) (B),and Tb(tba-PMP)_3(Phen) (C) (where tba-PMP,TPPO,and Phen stand for beta-diketone l-phenyl-3-methyl-4-(tert-butylacetyl)-5-pyrazolone;triphenyl phosphine oxide,and 1,10-phenanthroline,respectively) with different neutral ligands were synthesized and characterized,and the mechanism of how the neutral ligands affect photoluminescence (PL) and electroluminescence (EL) properties of terbium complexes was studied.Experiments revealed neutral ligand TPPO and Phen strongly affect the terbium complex PL intensity,TPPO enhanced the PL intensity of complex A,while Phen reduced the PL intensity of complex C compared to that of complex B.Investigation indicated this is caused by the different excited energy levels between tba-PMP,TPPO,and Phen,which were obtained from their phosphorescence spectra measured with their corresponding gadolinium complexes Gd(tba-PMP)_3-(H_2O)(EtOH),Gd(TPPO)_2(NO_3)_3,and Gd(Phen)_2(NO_3)_3.Compared to complex B,the energy absorbed by TPPO can be efficiently transferred to tba-PMP and the central ion Tb~(3+) due to its excited singlet and triplet energy levels matching that of tba-PMP and the ~5D_4 energy level of Tb~(3+),and consequently enhancing the PL intensity of A,while on the contrary,negative energy transfer occurred between Phen and tab-PMP or Tb~(3+) since the triplet energy level of Phen is lower than that of tba-PMP and the ~5D_4 energy level of Tb~(3+) as well.Experimental results show terbium complex electroluminescence (EL) is greatly dependent on its PL intensity,the performance achieved based on complexes A,B,and C being 9540 cd/m2 and 7.2 Im/W,3230 cd/m~2 and 1.17 Im/W,and 690 cd/m~2 and 0.13 Im/W,respectively,with the power efficiency ratio A:B:C= 55:9:1,which was greatly enlarged compared to their PL intensity ratio A:B:C = 2.1:1.3:1.
机译:三种ter络合物Tb(tba-PMP)_3(TPPO)(A),Tb(tba-PMP)_3(H_2O)(B)和Tb(tba-PMP)_3(Phen)(C)(其中tba-PMP ,TPPO和Phen代表分别带有不同中性配体的β-二酮-1-苯基-3-甲基-4-(叔丁基乙酰基)-5-吡唑啉酮;三苯基氧化膦和1,10-菲咯啉实验表明,中性配体TPPO和Phen对the配合物的PL强度有很大影响,TPPO增强了配合物A的PL强度。实验结果表明,中性配体如何影响of配合物的光致发光(PL)和电致发光(EL)特性的机理。研究表明,这是由于tba-PMP,TPPO和Phen的激发能级不同所致,该激发能级是通过用相应的measured测量的磷光光谱获得的配合物Gd(tba-PMP)_3-(H_2O)(EtOH),Gd(TPPO)_2(NO_3)_3和Gd(Phen)_2(NO_3)_3。到络合物B上,由于TPPO吸收的能量与tba-PMP的能级和Tb〜5D_4的能级相匹配,因此TPPO吸收的能量可以有效地转移到tba-PMP和中心离子Tb〜(3+) 〜(3+),从而增强了A的PL强度,相反,由于Phen的三重态能级低于tba,因此Phen与tab-PMP或Tb〜(3+)之间发生负能量转移-PMP和Tb〜(3+)的〜5D_4能级。实验结果表明,complex配合物电致发光(EL)很大程度上取决于其PL强度,基于配合物A,B和C的性能为9540 cd / m2和7.2 Im / W,3230 cd / m〜2和1.17 Im / W,以及690 cd / m〜2和0.13 Im / W,功率效率比A:B:C = 55:9: 1,与PL强度比A:B:C = 2.1:1.3:1相比大大放大了。

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