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Optically-regulated optical emission using colloidal quantum dot nanocrystals

机译:使用胶体量子点纳米晶体的光调节光发射

摘要

The present invention relates to the emission of light which occurs in proportion with an electrical signal, an optical signal, or the combination of both. The emission of light may occur due to the passage of current through a light-emitting polymer, or due to energy transfer of excitons from this polymer to light-emitting quantum dots. Optical sensitivity is achieved through the inclusion of another species of quantum dots whose absorption is generally at longer wavelengths relative to the light-emitting material. Light incident upon the device results in an enhanced current flow in the presence of an applied bias, and thus enhanced excitation of the light-emitting moity is achieved in proportion with the optical power absorbed by the light-absorbing moity. Two device architectures are presented, one based on a mutilayer structure in which the functions of light absorption and light emission are separated, and the other in which these functions are integrated within a single active region.
机译:本发明涉及与电信号,光信号或两者的组合成比例出现的光的发射。光的发射可能是由于电流通过发光聚合物,或者是由于激子从该聚合物到发光量子点的能量转移。通过包含另一种类的量子点来实现光学灵敏度,这些量子点的吸收通常相对于发光材料在更长的波长处。在施加偏压的情况下,入射到器件上的光导致电流增强,因此与由光吸收性部分吸收的光功率成比例地实现了对发光性部分的增强的激发。提出了两种器件架构,一种基于多层结构,其中光吸收和发光的功能是分开的,而另一种则将这些功能集成在单个有源区域中。

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