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通过调制动态氢键设计在稀溶液中具有高效发射的非常规发光材料。

Designing Nonconventional Luminescent Materials with Efficient Emission in Dilute Solutions via Modulation of Dynamic Hydrogen Bonds.

机构信息

Key Laboratory of New Processing Technology for Nonferrous Metal & Materials, Ministry of Education, Guilin University of Technology, Guilin 541004, China.

College of Pharmacy, Guilin Medical University, Guilin 541199, China.

出版信息

Molecules. 2023 Jul 6;28(13):5240. doi: 10.3390/molecules28135240.

Abstract

Nonconventional luminescent materials (NLMs) which do not contain traditional aromatic chromophores are of great interest due to their unique chemical structures, optical properties, and their potential applications in various areas, such as cellular imaging and chemical sensing. However, most reported NLMs show weak or no emission in dilute solutions, which severely limits their applications. In this work, dynamic hydrogen bonds were utilized to design NLMs with efficient emission in dilute solutions. To further validate the results, polymers P1 and P2 were successfully prepared and investigated. It was found that the luminescence quantum efficiency of P1 and P2 at a concentration of 0.1 mg/mL in water solution was 8.9 and 0.6%, respectively. The high efficiency can be attributed to the fact that polymer P1 has more intra- or intermolecular dynamic hydrogen bonds and other short interactions than P2 in dilute solutions, allowing P1 to achieve the through-space conjugation effect to increase the degree of system conjugation, restrict molecular motion, and decrease nonradiative transitions, which can effectively improve luminescence. In addition, polymer P2 exhibits the characteristics of clustering-triggered emission, excitation wavelength-dependent and concentration-dependent fluorescence properties, excellent photobleaching resistance, low cytotoxicity, and selective recognition of Fe. The present study investigates the manipulation of luminescence properties of NLMs in dilute solutions through the modulation of dynamic hydrogen bonds. This approach can serve as a semi-empirical technique for designing and building innovative NLMs in the times ahead.

摘要

非传统发光材料(NLMs)由于其独特的化学结构、光学性质以及在细胞成像和化学传感等各个领域的潜在应用而备受关注,这些材料不含传统的芳香发色团。然而,大多数报道的 NLMs 在稀溶液中表现出较弱或无发射,这严重限制了它们的应用。在这项工作中,利用动态氢键设计了在稀溶液中具有高效发射的 NLMs。为了进一步验证结果,成功制备并研究了聚合物 P1 和 P2。结果发现,聚合物 P1 和 P2 在水中浓度为 0.1mg/mL 时的荧光量子效率分别为 8.9%和 0.6%。高效率归因于聚合物 P1 在稀溶液中比 P2 具有更多的分子内或分子间动态氢键和其他短相互作用,使 P1 能够实现通过空间的共轭效应,增加体系的共轭程度,限制分子运动,减少非辐射跃迁,从而有效提高发光效率。此外,聚合物 P2 表现出聚集触发发射、激发波长依赖和浓度依赖荧光性质、优异的光漂白抗性、低细胞毒性以及对 Fe 的选择性识别等特性。本研究通过调节动态氢键来研究稀溶液中 NLMs 发光性质的操纵。这种方法可以作为一种半经验技术,用于设计和构建未来的创新 NLMs。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b5d1/10343347/1d9f0b0e06df/molecules-28-05240-g001.jpg

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