Ai Lin, Wang Haolin, Wang Boyang, Liu Suya, Song Haoqiang, Lu Siyu
College of Chemistry, Zhengzhou University, Zhengzhou, 450001, P. R. China.
Adv Mater. 2024 Nov;36(48):e2410094. doi: 10.1002/adma.202410094. Epub 2024 Oct 3.
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.
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。