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具有线性偏振光致发光的电可切换各向异性碳量子点:合成、各向异性性质及单轴取向的简便控制

Electrically Switchable Anisometric Carbon Quantum Dots Exhibiting Linearly Polarized Photoluminescence: Syntheses, Anisotropic Properties, and Facile Control of Uniaxial Orientation.

作者信息

Subedi Subhangi, Rella Avinash K, Trung Le Gia, Kumar Vineet, Kang Shin-Woong

机构信息

Department of Nano Convergence Engineering, Jeonbuk National University, Jeonju, 54896, Republic of Korea.

Department of Chemistry, Tri-Chandra Multiple Campus, Tribhuvan University, Kathmandu, 44613, Nepal.

出版信息

ACS Nano. 2022 Apr 26;16(4):6480-6492. doi: 10.1021/acsnano.2c00758. Epub 2022 Mar 28.

Abstract

Carbon quantum dots (CQDs) have been extensively explored in diverse fields because of their exceptional features. The nanometric particles with photoluminescence (PL) benefit various optical and photonic applications. However, the majority of previous reports have mainly focused on either unpolarized or circular-polarized (CP) PL. Linearly polarized (LP) emission of CQDs is limited mainly because of their isometric shape and difficulties in macroscopic orientation control. Herein, we report syntheses of anisometric CQDs and facile control of the uniaxial orientation on a macroscopic scale, which results in linearly polarized photoluminescence (LP-PL). The anisometric CQDs are synthesized from rigid-rod-shaped precursors and evenly dispersed in the rod-like liquid crystal (LC) host. As-synthesized CQDs exhibit a PL quantum yield as high as 35% in chloroform. In addition to uniform alignment, facile directional switching of the elongated CQD is established by employing the electrical responsiveness of the CQD and host LC. Therefore, the dichroic photophysical properties of anisometric CQDs have been beneficially adopted for fabrications of polarization-sensitive and electrically switchable PL devices. Also, anisometric CQDs are embedded in polymer films with molecular orientational patterns and clearly recognized by LP-PL.

摘要

碳量子点(CQDs)因其独特的特性而在多个领域得到了广泛研究。具有光致发光(PL)特性的纳米颗粒有利于各种光学和光子应用。然而,大多数先前的报道主要集中在非偏振或圆偏振(CP)PL上。CQDs的线性偏振(LP)发射受到限制,主要是因为它们的等轴形状以及宏观取向控制的困难。在此,我们报道了合成各向异性CQDs并在宏观尺度上轻松控制其单轴取向,从而实现线性偏振光致发光(LP-PL)。各向异性CQDs由刚性棒状前驱体合成,并均匀分散在棒状液晶(LC)主体中。合成的CQDs在氯仿中的PL量子产率高达35%。除了均匀排列外,利用CQDs和主体LC的电响应性还实现了细长CQDs的轻松方向切换。因此,各向异性CQDs的二向色性光物理特性已被有益地应用于制备偏振敏感和电可切换的PL器件。此外,各向异性CQDs被嵌入具有分子取向图案的聚合物薄膜中,并通过LP-PL清晰识别。

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