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用于手性逻辑门和深红色发光二极管中圆偏振发光放大的碳点浓度可切换组装

Concentration-Switchable Assembly of Carbon Dots for Circularly Polarized Luminescent Amplification in Chiral Logic Gates and Deep-Red Light-Emitting Diodes.

作者信息

Ai Lin, Wang Haolin, Wang Boyang, Liu Suya, Song Haoqiang, Lu Siyu

机构信息

College of Chemistry, Zhengzhou University, Zhengzhou, 450001, P. R. China.

出版信息

Adv Mater. 2024 Nov;36(48):e2410094. doi: 10.1002/adma.202410094. Epub 2024 Oct 3.

Abstract

Stimuli-responsive circularly polarized luminescent (CPL) materials are expected to find widespread application in advanced information technologies, such as 3D displays, multilevel encryption, and chiral optical devices. Here, using R-/S-α-phenylethylamine and 3,4,9,10-perylenetetracarboxylic dianhydride as precursors, chiral carbon dots (Ch-CDs) exhibiting bright concentration-dependent luminescence are synthesized, demonstrating reversible responses in both their morphologies and emission spectra. By adjusting Ch-CD concentration, the switchable wavelength is extended over 180 nm (539-720 nm), with the maximum quantum efficiency reaching 100%. Meanwhile, upon increasing Ch-CD concentration, the emission wavelength red-shifts, while the chirality of the assembled nanoribbons is synchronously amplified, ultimately achieving CPL at 709 nm and a maximum luminescence asymmetry factor of 2.18 × 10. These values represent the longest wavelength and the largest g reported for CDs. Considering the remarkable optical properties of the synthesized Ch-CDs, multilevel chiral logic gates are designed, and their potential practical applications are demonstrated in multilevel anti-counterfeiting encryption, flexible electronic printing, and solid-state CPL. Furthermore, deep-red chiral electroluminescence light-emitting diodes (EL-LEDs) are prepared using these Ch-CDs, achieving an external quantum efficiency of 1.98%, which is the highest value reported to date for CDs in deep-red EL-LEDs, and the first report of chiral electronic devices based on CDs.

摘要

刺激响应型圆偏振发光(CPL)材料有望在先进信息技术中得到广泛应用,如3D显示、多级加密和手性光学器件。在此,以R-/S-α-苯乙胺和3,4,9,10-苝四羧酸二酐为前驱体,合成了具有明亮浓度依赖性发光的手性碳点(Ch-CDs),其形态和发射光谱均表现出可逆响应。通过调节Ch-CD浓度,可切换波长扩展超过180 nm(539 - 720 nm),最大量子效率达到100%。同时,随着Ch-CD浓度增加,发射波长红移,而组装纳米带的手性同步放大,最终在709 nm处实现CPL,最大发光不对称因子为2.18×10。这些值代表了碳点报道的最长波长和最大g值。考虑到合成的Ch-CDs具有显著的光学性质,设计了多级手性逻辑门,并在多级防伪加密、柔性电子印刷和固态CPL中展示了其潜在的实际应用。此外,使用这些Ch-CDs制备了深红色手性电致发光二极管(EL-LEDs),实现了1.98%的外量子效率,这是迄今为止碳点在深红色EL-LEDs中报道的最高值,也是基于碳点的手性电子器件的首次报道。

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