Furuta Paul, Brooks Jason, Thompson Mark E, Fréchet Jean M J
Department of Chemistry, University of California, Berkeley, CA 94720-1460, USA.
J Am Chem Soc. 2003 Oct 29;125(43):13165-72. doi: 10.1021/ja0371348.
The site isolation of two dyes capable of electronic interaction via Forster energy transfer has been studied with the two dyes coumarin 343 and pentathiophene encapsulated by dendrons containing both solubilizing and electroactive moieties. Photoluminescence studies of mixtures of the dendritic dyes show that at high dendron generation, significant site isolation is achieved with relative emission characteristics influenced by both the degree of site isolation and the emission quantum yield of the dyes. Electroluminescence studies carried out in organic light emitting diode devices confirm that color tuning may be achieved by mixing the two encapsulated dyes in a single layer. However, selective carrier trapping by one of the core component dyes can dramatically influence the effectiveness of other components in the device.
通过福斯特能量转移实现电子相互作用的两种染料的位点隔离已经使用香豆素343和五噻吩这两种染料进行了研究,它们被含有增溶和电活性部分的树枝状分子包裹。树枝状染料混合物的光致发光研究表明,在高代数树枝状分子的情况下,实现了显著的位点隔离,其相对发射特性受位点隔离程度和染料发射量子产率的影响。在有机发光二极管器件中进行的电致发光研究证实,通过在单层中混合两种包裹的染料可以实现颜色调节。然而,核心成分染料之一的选择性载流子捕获会显著影响器件中其他成分的有效性。