环形纳米孔电极双向电泳增强InGaN/GaN纳米棒led垂直对准

IF 7.2 2区 材料科学 Q1 MATERIALS SCIENCE, MULTIDISCIPLINARY
Yeong-Hoon Cho, Jiwon Park, Taehwan Kim, Pil-Kyu Jang, In-Hwan Lee
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引用次数: 0

摘要

介质电泳(DEP)作为一种很有前途的传质方法,引起了对纳米棒发光二极管(NRLs)排列的各种研究。然而,大多数研究都集中在水平对准上,由于nrl的对准方向与主要发射方向不匹配,限制了光的提取,并且难以精确定位nrl在期望的位置。在本研究中,通过引入甜甜圈状纳米孔电极(DNE)结构,提出了一种基于DEP的垂直定向策略,提高了定向良率。DNE包括两个由绝缘层隔开的电极,每个纳米孔内都有一个中心柱。该贴片防止nrl倾斜并水平放置在底部电极上,从而使多个nrl能够放置在单个纳米孔中。此外,通过优化NRL和DNE的维数,可以有效地控制其走向趋势。因此,1 × 1、2 × 2和3 × 3 DNE阵列的对准率分别为78%、63%和61%。这些结果强调了所提出的nrl精确定位结构的可行性,为下一代显示技术的超小、高分辨率显示像素提供了一条有希望的途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Enhanced Vertical Alignment of InGaN/GaN Nanorod LEDs Through Dielectrophoresis with Donut-Shaped Nanohole Electrodes

Enhanced Vertical Alignment of InGaN/GaN Nanorod LEDs Through Dielectrophoresis with Donut-Shaped Nanohole Electrodes

Dielectrophoresis (DEP) has emerged as a promising mass transfer method, leading to various studies on the alignment of nanorod light-emitting diodes (NRLs). However, most studies have focused on horizontal alignment, which limits light extraction due to a mismatch between the alignment and major emission directions of NRLs, and makes it difficult to precisely position NRLs at the desired locations. In this study, a vertical alignment strategy for NRLs with an enhanced alignment yield is presented using DEP by introducing a donut-shaped nanohole electrode (DNE) structure. The DNE comprises two electrodes separated by an insulating layer, with a central post located within each nanohole. This post prevents the NRLs from tilting and lying horizontally on the bottom electrode, thereby enabling the placement of multiple NRLs within a single nanohole. Moreover, the alignment tendency can be effectively controlled by optimizing NRL and DNE dimensions. Consequently, alignment yields of 78%, 63%, and 61% are achieved for 1 × 1, 2 × 2, and 3 × 3 DNE arrays, respectively. These results highlight the feasibility of the proposed structure for the precise positioning of the NRLs, offering a promising pathway toward ultrasmall, high-resolution display pixels for next-generation display technologies.

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来源期刊
Advanced Optical Materials
Advanced Optical Materials MATERIALS SCIENCE, MULTIDISCIPLINARY-OPTICS
CiteScore
13.70
自引率
6.70%
发文量
883
审稿时长
1.5 months
期刊介绍: Advanced Optical Materials, part of the esteemed Advanced portfolio, is a unique materials science journal concentrating on all facets of light-matter interactions. For over a decade, it has been the preferred optical materials journal for significant discoveries in photonics, plasmonics, metamaterials, and more. The Advanced portfolio from Wiley is a collection of globally respected, high-impact journals that disseminate the best science from established and emerging researchers, aiding them in fulfilling their mission and amplifying the reach of their scientific discoveries.
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