镧系元素
表征(材料科学)
制作
化学
有机发光二极管
光化学
材料科学
离子
纳米技术
替代医学
病理
医学
有机化学
图层(电子)
作者
Rashid Ilmi,Danyang Zhang,Leonardo Tensi,Houda Al‐Sharji,Nawal K. Al‐Rasbi,Alceo Macchioni,Liang Zhou,Wai‐Yeung Wong,Paul R. Raithby,Muhammad S. Khan
标识
DOI:10.1016/j.dyepig.2022.110300
摘要
A series of tetrakis lanthanide complexes with the general formula [Ln(hfaa) 4 ] - (DpaH) + [Ln = ( Sm-1 ), ( Eu-1 ) and ( Tb-1 )], hfaa = hexafluroacetylacetonate and Dpa −2,2′-dipyridylamine] has been synthesized by the reaction of LnCl 3, hfaa and Dpa in the presence of ammonia solution (25%). The complexes have been characterized by analytical and spectroscopic methods. The solution molecular structure of the complexes was elucidated by one- and two-dimensional NMR spectroscopy which shows that the DpaH + cation retains a close interaction with the lanthanide anion in solution. The crystal structure of Eu-1 , determined by single crystal X-ray diffraction, confirms this intermolecular interaction in the solid-state through a N–H⋯O hydrogen bond of 2.187 Å. In the [Eu(hfaa) 4 ] - anion the EuO 8 coordination polyhedron has a distorted triangular dodecahedron geometry with approximate D 2d -symmetry around the metal centre. Photophysical, thermal, and electroluminescent properties of the complexes have been investigated. The Sm-1 and Eu-1 complexes displayed efficient typical red emission with a sizeable photoluminescence quantum yield (PLQY) while Tb-1 displayed near-white light emission. The complexes have been used as dopants to fabricate single- and double-emitting layer (EML) OLEDs through the thermal evaporation method. At the optimum doping concentration, double-EML Eu-1 based device displayed orange electroluminescence (EL) with a brightness (B) of 417 cd/m 2 and very low V turn-on = 3.4 V. Interestingly, the Sm-1 based single-EML device exhibited pure red emission with the Commission internationale de l'éclairage [(CIE) x,y = 0.613, 0.321], which is rare. The Sm-1 based device performance [B = 145 cd/m 2 , current efficiency ( η c ) = 0.35 cd/A, power efficiency ( η p ) = 0.15 lm/W with an external quantum efficiency (EQE) = 0.3% and V turn-on = 7.1 V] surpassed that of the only reported Sm-based single red-OLED (R-OLED). • Three new tetrakis [Ln(hfaa) 4 ] - (DpaH) + [Ln = Sm-1 , Eu-1 & Tb-1 ] complexes were synthesized. • Sm-1 and Eu-1 displayed red emission with sizeable PLQY while Tb-1 showed near white light emission. • Sm-1 and Eu-1 were successfully employed as emitters to fabricate red and orange OLEDs.
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