通过三重子到星子的佛斯特共振能量转移实现近红外长寿命发射

IF 9.1 Q1 ENGINEERING, CHEMICAL Green Chemical Engineering Pub Date : 2024-03-22 DOI:10.1016/j.gce.2024.03.004
Ruihong Liu , Dongzhi Liu , Xiang Ma
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引用次数: 0

摘要

本文采用创新方法在非晶有机聚合物材料中实现了近红外(NIR)长寿命圆偏振发光(CPL)。通过将双萘衍生物 R/S-BPN 作为能量供体与卟啉衍生物 TPPOH 作为能量受体共同掺杂到 PVA 聚合物基体中,利用三重子-子午佛斯特共振能量转移(TS-FRET)原理,成功实现了近红外长寿命荧光。光物理特性分析表明,在不同的供体-受体比例下,室温磷光(RTP)发射峰和磷光寿命各不相同。TS-FRET 过程有助于延长受体 TPPOH 的寿命和红移发射。此外,采用手性供体 R/S-BPN 作为手性种子来建立手性环境,有助于实现近红外 CPL。这些发现提供了一种新颖实用的策略,无需复杂的分子工程就能实现长波长和长寿命的 CPL 荧光,有望应用于各种技术领域。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Near-infrared long-lifetime emission via triplet-to-singlet Förster resonance energy transfer
Here, an innovative approach to achieve near-infrared (NIR) long-lived circularly polarized luminescence (CPL) in amorphous organic polymer materials was achieved. By co-doping bi-naphthalene derivative R/S-BPN as energy donors with porphyrin derivative TPPOH as energy acceptor into PVA polymer matrix, the NIR long-lifetime fluorescence was successfully realized through the principles of triplet-to-singlet Förster resonance energy transfer (TS-FRET). Photophysical characterizations revealed distinct room temperature phosphorescence (RTP) emission peaks and phosphorescence lifetimes for different donor-acceptor ratios. The TS-FRET process facilitated extended lifetime and red-shifted emission of the acceptor TPPOH. Moreover, employing the chiral donor R/S-BPN as chiral seeds to establish chiral environments facilitated the achievement of near-infrared CPL. These findings offer a novel and practical strategy for achieving long-wavelength and long-lifetime CPL fluorescence without complex molecular engineering, presenting potential applications in various technological fields.
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来源期刊
Green Chemical Engineering
Green Chemical Engineering Process Chemistry and Technology, Catalysis, Filtration and Separation
CiteScore
11.60
自引率
0.00%
发文量
58
审稿时长
51 days
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