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用于增强固态荧光的聚集诱导猝灭碳点的精确纳米受限自组装

Precision Nanoconfined Self-Assembly of ACQ Carbon Dots for Enhanced Solid-State Fluorescence.

作者信息

Hao Jingyi, Zhang Wenjie, Li Yuying, Ma Wenjun, Zhu Yueying, Zhang Junle, Shi Ge, Qiao Xiaoguang, He Yanjie, Zhao Zheng, Pang Xinchang, Tang Ben Zhong

机构信息

Henan Joint International Research Laboratory of Living Polymerizations and Functional Nanomaterials, Henan Key Laboratory of Advanced Nylon Materials and Application, School of Materials Science and Engineering, Zhengzhou University, Zhengzhou, 450001, P. R. China.

School of Materials Science and Engineering, School of Chemistry & Chemical Engineering, Henan University of Science and Technology, Luoyang, 471023, P. R. China.

出版信息

Adv Sci (Weinh). 2025 Jul;12(27):e2503317. doi: 10.1002/advs.202503317. Epub 2025 May 8.

Abstract

Carbon dots (CDs) are promising fluorescent nanomaterials, however, they are often hindered by aggregation caused quenching (ACQ) in solid-state application because of close π-π stacking interactions. Furthermore, the challenges still exist in the development of CDs-based solid-state fluorescent materials with stable structure and high fluorescence intensity. To address this challenge, a general and robust polymer directed nanoconfined self-assembly strategy is developed, enabling the fabrication of regular morphology, structurally ultra-stable and solid-state fluorescent CDs assemblies using hydrophilic star-liked di-block copolymer unimolecular micelles as templates. The absolute photoluminescence quantum yield (PLQY) of these fluorescent solid-state CD assemblies reaches 21.46%, significantly higher than 0.12% observed in traditional ACQ solid-state CDs. The enhanced solid-state fluorescent property is attributed to the prevention of the π-π stacking of CDs, the restricted movement of surface groups and the suppression of non-radiative transition processes via the polymer directed nanoconfined self-assembly of CDs. The fluorescence intensity of CDs assemblies can also be precisely tuned by adjusting the polymerization time of polymer template. Based on these advantages, the CDs assemblies are employed as luminescent materials in the identification of latent fingerprints (LFP), flexible films and 3D printing functional hydrogels.

摘要

碳点(CDs)是很有前景的荧光纳米材料,然而,由于紧密的π-π堆积相互作用,它们在固态应用中常常受到聚集诱导猝灭(ACQ)的阻碍。此外,在开发具有稳定结构和高荧光强度的基于CDs的固态荧光材料方面仍然存在挑战。为了应对这一挑战,开发了一种通用且强大的聚合物导向纳米限域自组装策略,能够以亲水性星型二嵌段共聚物单分子胶束为模板,制备出具有规则形态、结构超稳定的固态荧光CDs组装体。这些荧光固态CDs组装体的绝对光致发光量子产率(PLQY)达到21.46%,显著高于传统ACQ固态CDs中观察到的0.12%。增强的固态荧光性能归因于通过CDs的聚合物导向纳米限域自组装防止了CDs的π-π堆积、限制了表面基团的移动以及抑制了非辐射跃迁过程。CDs组装体的荧光强度也可以通过调节聚合物模板的聚合时间来精确调控。基于这些优点,CDs组装体被用作发光材料用于潜在指纹(LFP)识别、柔性薄膜和3D打印功能水凝胶。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d9ef/12279204/a53dde721680/ADVS-12-2503317-g005.jpg

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