Bright ESIPT emission from 2,6-di(thiazol/oxazol/imidazol-2-yl)phenol derivatives in solution, aggregation and solid states.

IF 2.4 3区 化学 Q3 CHEMISTRY, ANALYTICAL Methods and Applications in Fluorescence Pub Date : 2024-06-14 DOI:10.1088/2050-6120/ad5490
Panpan Chen, Zhigang Niu, Eenju Wang
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Abstract

Most luminophores often suffer from the problem of aggregation-caused quenching (ACQ) or fluorescence disappearance in dilute solution. It is significant to bridge the gap between ACQ and AIE. In this work, a facile but effective strategy was proposed for the fabrication of always-on luminophores based on the excited state intramolecular proton transfer (ESIPT) mechanism, and six luminophores emitting bright fluorescence in solution, aggregation and solid states were synthesized from 5-tert-butyl-2-hydroxyisophthalaldehyde. All these ESIPT systems show only keto emission owing to their congested structures which block the breakage of intramolecular hydrogen bond (O-H⋯N) by solvation, and subsequently make enol emission impossible. Three of these luminophores are prone to convert into the corresponding phenolate anions emitting blue-shifted emission, which enable them to sense pH variation in the weakly basic range. Furthermore, white-light emission was achieved by combining two of them which show complementary-color fluorescence, and one of them was utilized for bioimaging of living Hela cells and the high-resolution image was obtained.

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溶液、聚集和固体状态下 2,6-二(噻唑/恶唑/咪唑-2-基)苯酚衍生物的明亮 ESIPT 发射。
大多数发光体在稀释溶液中通常会出现聚集淬灭(ACQ)或荧光消失的问题。缩小 ACQ 与 AIE 之间的差距意义重大。本研究基于激发态分子内质子转移(ESIPT)机制,提出了一种简便而有效的常亮发光体制造策略,并以 5-叔丁基-2-羟基间苯二甲醛为原料合成了六种在溶液、聚集和固态下均能发出明亮荧光的发光体。所有这些 ESIPT 系统都只发出酮光,这是因为它们的拥挤结构阻碍了分子内氢键(O-H--N)在溶解过程中断裂,从而导致无法发出烯醇光。其中三种发光体容易转化为相应的苯酚阴离子,发出蓝移发射,这使它们能够感知弱碱性范围内的 pH 值变化。此外,通过将其中两种荧光团组合在一起,还实现了白光发射,并将其中一种荧光团用于活体 Hela 细胞的生物成像,获得了高分辨率图像。
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来源期刊
Methods and Applications in Fluorescence
Methods and Applications in Fluorescence CHEMISTRY, ANALYTICALCHEMISTRY, PHYSICAL&n-CHEMISTRY, PHYSICAL
CiteScore
6.20
自引率
3.10%
发文量
60
期刊介绍: Methods and Applications in Fluorescence focuses on new developments in fluorescence spectroscopy, imaging, microscopy, fluorescent probes, labels and (nano)materials. It will feature both methods and advanced (bio)applications and accepts original research articles, reviews and technical notes.
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