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基于两亲性溴萘二甲酰亚胺吡啶鎓分级组装实现近红外磷光超分子水凝胶

Achieving Near-Infrared Phosphorescence Supramolecular Hydrogel Based on Amphiphilic Bromonaphthalimide Pyridinium Hierarchical Assembly.

作者信息

Song Qi, Liu Zhenliang, Li Jinwei, Sun Yongbin, Ge Yanqing, Dai Xian-Yin

机构信息

School of Chemistry and Pharmaceutical Engineering, Shandong First Medical University and Shandong Academy of Medical Sciences, Taian, 271016, China.

出版信息

Adv Mater. 2024 Oct;36(40):e2409983. doi: 10.1002/adma.202409983. Epub 2024 Aug 26.

Abstract

Phosphorescent supramolecular hydrogels are currently a prevalent topic for their great promise in various photonic applications. Herein, an efficient near-infrared (NIR) phosphorescence supramolecular hydrogel is reported via the hierarchical assembly strategy in aqueous solution, which is fabricated from amphiphilic bromonaphthalimide pyridinium derivative (G), exfoliated Laponite (LP) nanosheets, and polymeric polyacrylamide (PAAm). Initially, G spontaneously self-aggregates into spherical nanoparticles covered with positively charged pyridinium units and emits single fluorescence at 410 nm. Driven by electrostatic interactions with negatively charged nanosheets, the nanoparticles subsequently function as the cross-linked binders and coassemble with LP into supramolecular hydrogels with an engendered red room-temperature phosphorescence (RTP) up to 620 nm. Benefiting from hydrogen-bonding interactions-mediated physical cross-linkage, the further introduction of PAAm not only significantly elevates the mechanical strength of the hydrogels showing fast self-healing capability, but also increases phosphorescence lifetime from 2.49 to 4.20 ms, especially generating phosphorescence at even higher temperature (τ = 2.46 ms). Additionally, efficient RTP energy transfer occurs after doping a small amount of organic dye heptamethine cyanine (IR780) as an acceptor into hydrogels, resulting in a long-lived NIR emission at 823 nm with a high donor/acceptor ratio, which is successfully applied for cell labeling in the NIR window.

摘要

磷光超分子水凝胶因其在各种光子应用中具有巨大潜力,目前是一个热门话题。在此,通过水溶液中的分级组装策略报道了一种高效的近红外(NIR)磷光超分子水凝胶,它由两亲性溴萘二甲酰亚胺吡啶鎓衍生物(G)、剥离的锂皂石(LP)纳米片和聚合物聚丙烯酰胺(PAAm)制备而成。最初,G自发自聚集形成覆盖有带正电吡啶鎓单元的球形纳米颗粒,并在410 nm处发射单一荧光。在与带负电纳米片的静电相互作用驱动下,纳米颗粒随后充当交联粘合剂,并与LP共组装成超分子水凝胶,产生高达620 nm的红色室温磷光(RTP)。受益于氢键相互作用介导的物理交联,PAAm的进一步引入不仅显著提高了水凝胶的机械强度,使其具有快速自愈能力,还将磷光寿命从2.49 ms提高到4.20 ms,特别是在更高温度下也能产生磷光(τ = 2.46 ms)。此外,在向水凝胶中掺杂少量有机染料七甲川花菁(IR780)作为受体后,发生了高效的RTP能量转移,导致在823 nm处产生长寿命的近红外发射,供体/受体比例高,这成功应用于近红外窗口的细胞标记。

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