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Enhancing Shielding of Triplet Energy Transfer to Poly(p-phenylene)s from Phosphor Dopant by Addition of Branched Alcohol for Highly Efficient Electrophosphorescence

机译:通过添加支链醇增强高效电致磷光,可增强三重态能量从磷掺杂剂向聚对苯撑转移的屏蔽

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To obtain an efficient elecrrophosphorescent device, one needs to consider quenching of phosphor phosphorescence brought by the low triplet energy of the host because the exothermic energy transfer can effectively quench phosphor phosphorescence and markedly lower the device efficiency. Here, a facile approach of adding a branched alcohol (3-tert-butyl-2,2.4,4-tetramethyipentan-3-ol, ROH) into green emission phosphor-doped dialkoxyl-substituied polytpara-phenylene)s (PPPs) is demonstrated to effectively enhance shielding of triplet energy transfer to PPPs from the phosphor, resulting from a formation of self-assembly structure that block direct contact between phosphor and the main chains. The green electrophosphorescent device performance can be improved from 7.1 and 32.2 cd/A to 25.1 and 42 cd/A for PPP with dioctoxyl substiruents (dC8OPPP) and with carbozole (Cz)-capped dialkoxyl-substituents (CzPPP), respectively. The latter result 42 cd/A is the highest record for green emission In polymer light emitting diode. This finding suggests that promotion of specific electro-optical properties for small molecule and polymer can be obtained through a self-assembling interaction in addition to chemical structure modification.
机译:为了获得有效的电致磷光器件,需要考虑由主体的低三重态能量带来的磷光体磷光的猝灭,因为放热能量转移可以有效地猝灭磷光体磷光并显着降低器件效率。在这里,展示了一种简便的方法,可将支链醇(3-叔丁基-2,2.4,4-四甲基戊烷-3-醇,ROH)添加到绿色荧光粉掺杂的二烷氧基取代的聚对苯撑(PPPs)中通过形成自组装结构来阻止磷光体与主链之间的直接接触,从而有效地增强了三重态能量从磷光体向PPP转移的屏蔽。对于具有二辛氧基取代基(dC8OPPP)和具有咔唑(Cz)封端的二烷氧基取代基(CzPPP)的PPP,绿色电致磷光器件的性能可以从7.1和32.2 cd / A分别提高到25.1和42 cd / A。后一个结果42 cd / A是聚合物发光二极管中绿色发射的最高记录。该发现表明,除了化学结构修饰之外,还可以通过自组装相互作用来促进小分子和聚合物的特定电光性能的提高。

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