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Laser-assisted forward transfer of multi-spectral nanocrystal quantum dot emitters

机译:激光辅助的多光谱纳米晶体量子点发射器的正向转移

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摘要

We report in this paper the development of a novel laser-transfer scheme to integrate laterally arrays of light-emitting pixels made of semiconductor nanocrystal quantum dots (NQDs). The nanocrystal composition and size can be tailored such that the luminescence emission of the quantum dots in each device pixel constitutes a distinctive spectral channel of narrow bandwidth. An ultrathin film of photosensitive triazene polymer (TP) has been employed as the sacrificial layer whose decomposition upon UV excitation delivers the bilayer structure of nanocrystal and metal films to the substrates. The ejected plume of the decomposed photosensitive polymer produces a thrust force to ensure the conformal contacts between the NQD layer and the bottom hole transport layer. A 6 X 6 red and yellow matrix with pixel sizes of 800 mu m is demonstrated. This technique opens up the possibility of developing small, on-chip light sources featured with multiple wavelength channels over a desired spectral range as well as the flexible substratum.
机译:我们在本文中报告了一种新型的激光传输方案的开发,该方案整合了由半导体纳米晶体量子点(NQD)制成的发光像素的横向阵列。可以调整纳米晶体的组成和尺寸,使得每个器件像素中量子点的发光发射构成窄带宽的独特光谱通道。感光层三氮烯聚合物(TP)的超薄膜已被用作牺牲层,牺牲层在紫外线激发下分解,将纳米晶体和金属膜的双层结构传递到基板上。分解的光敏聚合物喷出的羽流产生推力,以确保NQD层和井底传输层之间的保形接触。演示了像素大小为800微米的6 X 6红黄矩阵。这项技术开辟了开发小型,片上光源的可能性,该光源具有在所需光谱范围内的多个波长通道以及柔性基板。

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