Suppr超能文献

混合有机/III 族氮化物光栅结构的偏振白光。

Polarized white light from hybrid organic/III-nitrides grating structures.

机构信息

Department of Electronic and Electrical Engineering, University of Sheffield, United Kingdom.

出版信息

Sci Rep. 2017 Jan 3;7:39677. doi: 10.1038/srep39677.

Abstract

Highly polarised white light emission from a hybrid organic/inorganic device has been achieved. The hybrid devices are fabricated by means of combining blue InGaN-based multiple quantum wells (MQWs) with a one-dimensional (1D) grating structure and down-conversion F8BT yellow light emitting polymer. The 1D grating structure converts the blue emission from unpolarised to highly polarised; Highly polarised yellow emission has been achieved from the F8BT polymer filled and aligned along the periodic nano-channels of the grating structure as a result of enhanced nano-confinement. Optical polarization measurements show that our device demonstrates a polarization degree of up to 43% for the smallest nano-channel width. Furthermore, the hybrid device with such a grating structure allows us to achieve an optimum relative orientation between the dipoles in the donor (i.e., InGaN/GaN MQWs) and the diploes in the acceptor (i.e., the F8BT), maximizing the efficiency of non-radiative energy transfer (NRET) between the donor and the acceptor. Time-resolved micro photoluminescence measurements show a 2.5 times enhancement in the NRET efficiency, giving a maximal NRET efficiency of 90%. It is worth highlighting that the approach developed paves the way for the fabrication of highly polarized white light emitters.

摘要

已实现了由混合有机/无机器件发出的高度偏振白光。通过将蓝 InGaN 基多量子阱 (MQWs) 与一维 (1D) 光栅结构和下转换 F8BT 黄色发光聚合物相结合,制造出混合器件。1D 光栅结构将非偏振的蓝光发射转换为高度偏振;由于增强的纳米限制,F8BT 聚合物填充并沿着光栅结构的周期性纳米通道排列,从而实现了高度偏振的黄色发射。光学偏振测量表明,我们的器件对于最小纳米通道宽度达到了 43%的偏振度。此外,具有这种光栅结构的混合器件使我们能够在供体(即 InGaN/GaN MQWs)和受体(即 F8BT)中的偶极子之间实现最佳相对取向,从而最大化供体和受体之间非辐射能量转移 (NRET) 的效率。时间分辨微光致发光测量显示 NRET 效率提高了 2.5 倍,最大 NRET 效率达到 90%。值得强调的是,所开发的方法为制造高度偏振的白光发射器铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1c6b/5206735/2f3f90f19c3d/srep39677-f1.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验