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螺吡喃光致异构化动力学在多重响应水凝胶中的研究。

Spiropyran Photoisomerization Dynamics in Multiresponsive Hydrogels.

机构信息

John A. Paulson School of Engineering and Applied Sciences, Harvard University, Cambridge, Massachusetts 02138, United States.

Stratingh Institute for Chemistry, University of Groningen, Nijenborgh 7, 9747 AG Groningen, The Netherlands.

出版信息

J Am Chem Soc. 2022 Jan 12;144(1):219-227. doi: 10.1021/jacs.1c08778. Epub 2021 Dec 29.

Abstract

Light-responsive, spiropyran-functionalized hydrogels have been used to create reversibly photoactuated structures for applications ranging from microfluidics to nonlinear optics. Tailoring a spiropyran-functionalized hydrogel system for a particular application requires an understanding of how co-monomer composition affects the switching dynamics of the spiropyran chromophore. Such gels are frequently designed to be responsive to different stimuli such as light, temperature, and pH. The coupling of these influences can significantly alter spiropyran behavior in ways not currently well understood. To better understand the influence of responsive co-monomers on the spiropyran isomerization dynamics, we use UV-vis spectroscopy and time-dependent fluorescence intensity measurements to study spiropyran-modified hydrogels polymerized from four common hydrogel precursors of different pH and temperature responsivity: acrylamide, acrylic acid, isopropylacrylamide, and 2-(dimethylamino)ethyl methacrylate. In acidic and neutral gels, we observe unusual nonmonotonic, triexponential fluorescence dynamics under 405 nm irradiation that cannot be explicated by either the established spiropyran-merocyanine interconversion model or hydrolysis. To explain these results, we introduce an analytical model of spiropyran interconversions that includes H-aggregated merocyanine and its light-triggered disaggregation under 405 nm irradiation. This model provides an excellent fit to the observed fluorescence dynamics and elucidates exactly how creating an acidic internal gel environment promotes the fast and complete conversion of the hydrophilic merocyanine speciesto the hydrophobic spiropyran form, which is desired in most light-sensitive hydrogel actuators. This can be achieved by incorporating acrylic acid monomers and by minimizing the aggregate concentration. Beyond spiropyran-functionalized gel actuators, these conclusions are particularly critical for nonlinear optical computing applications.

摘要

具有光响应性的螺吡喃功能化水凝胶已被用于创建可用于从微流控到非线性光学等各种应用的可逆光驱动结构。为特定应用定制螺吡喃功能化水凝胶体系需要了解共聚单体组成如何影响螺吡喃发色团的开关动力学。此类凝胶通常设计为对不同刺激(如光、温度和 pH)有响应。这些影响的结合会显著改变螺吡喃的行为,而目前对此了解甚少。为了更好地了解响应性共聚单体对螺吡喃异构化动力学的影响,我们使用紫外可见光谱和时间分辨荧光强度测量来研究由四种不同 pH 和温度响应性常见水凝胶前体聚合而成的螺吡喃修饰水凝胶:丙烯酰胺、丙烯酸、异丙基丙烯酰胺和 2-(二甲氨基)乙基甲基丙烯酸酯。在酸性和中性凝胶中,我们观察到在 405nm 照射下异常的非单调三指数荧光动力学,这不能用已建立的螺吡喃-次甲基菁互变模型或水解来解释。为了解释这些结果,我们引入了一个包括 H 聚集的次甲基菁及其在 405nm 照射下光触发解聚的螺吡喃互变分析模型。该模型与观察到的荧光动力学非常吻合,并阐明了如何在酸性内部凝胶环境中促进亲水性次甲基菁物种快速完全转化为疏水性螺吡喃形式,这在大多数光敏感水凝胶致动器中是期望的。这可以通过加入丙烯酸单体并最小化聚集浓度来实现。除了螺吡喃功能化凝胶致动器,这些结论对于非线性光学计算应用尤其关键。

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