Department of Chemistry, Tufts University, 62 Talbot Avenue, Medford, Massachusetts 02155, United States.
ACS Appl Mater Interfaces. 2021 Mar 24;13(11):13658-13665. doi: 10.1021/acsami.0c22313. Epub 2021 Mar 11.
Fluorophores that respond to external stimuli on demand have numerous applications in imaging and chemical or biological sensing. In this paper, we describe conjugated polymer nanoparticles (CPNs) that comprise a donor polymer matrix and a red-fluorescent, singlet oxygen-reactive heteroacene dopant () that display a ratiometric response upon photo-oxidation. This ratiometric response can be tuned by the level of doping of , the identity of the conjugated polymer matrix used, and the blending of two conjugated polymers together to access red-shifted emission wavelengths. We followed a rational design process that combined (i) fundamental understanding of the influence of the chemical structure on luminescence spectra and efficiencies, energy transfer efficiencies, and reactivity and (ii) systematically determining how blending multiple chromophores in nanoparticles influences energy transfer efficiencies and the speed of optical responses to irradiation. Our approach of refining the compositions of these nanoparticles has yielded materials that combine many desirable characteristics for analytical applications-utility in aqueous environments, high quantum yield, emission of red light, and ratiometric luminescent responses. We anticipate that the type of approach described herein can be of use to others in designing CPNs for luminescence applications.
荧光团可以根据需要对外界刺激做出响应,在成像和化学或生物传感方面有广泛的应用。在本文中,我们描述了一种包含给体聚合物基质和红色荧光、单线态氧反应杂芳烃掺杂剂 ()的共轭聚合物纳米粒子 (CPN),在光氧化时显示出比率响应。这种比率响应可以通过掺杂水平、所使用的共轭聚合物基质的特性以及两种共轭聚合物的共混来调谐,以获得红移发射波长。我们遵循了一种合理的设计过程,该过程结合了(i)对化学结构对发光光谱和效率、能量转移效率和反应性的影响的基本理解,以及(ii)系统地确定在纳米粒子中混合多个发色团如何影响能量转移效率和对辐照的光学响应速度。我们改进这些纳米粒子组成的方法得到了一些材料,这些材料结合了分析应用的许多理想特性——在水相环境中的实用性、高量子产率、红光发射和比率发光响应。我们预计,本文中描述的这种方法可以为其他人设计用于发光应用的 CPN 提供帮助。