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光响应性丝纳米纤维:用于环境应用的光化学平台。

Light Responsive Silk Nanofibers: An Optochemical Platform for Environmental Applications.

机构信息

Smart Materials and ‡Department of Pattern Analysis and Computer Vision, Istituto Italiano di Tecnologia , Via Morego 30, 16163 Genova, Italy.

出版信息

ACS Appl Mater Interfaces. 2017 Nov 22;9(46):40707-40715. doi: 10.1021/acsami.7b13372. Epub 2017 Nov 9.

DOI:10.1021/acsami.7b13372
PMID:29120601
Abstract

Photochromic spiropyran-doped silk fibroin poly(ethylene oxide) nanofibers which combine the attractive properties and biocompatibility of silk with the photocontrollable and reversible optical, mechanical, and chemical response of the spiropyran dopants are herein presented. As proved, the reversible variation of the absorption and emission signals of the mats and of their Young's modulus upon alternate UV and visible light irradiation is ascribed to the reversible photoconversion of the spiropyran form to its polar merocyanine counterpart. Most importantly, the interactions of the merocyanine molecules with acidic vapors as well as with heavy metal ions dispersed in solution produce analyte-specific spectral changes in the emission profile of the composite, accompanied by a characteristic chromic variation. Because of the high surface-to-volume ratio of the nanofibrous network, such interactions are fast, thus enabling both an optical and a visual detection in a 30-60 s time scale. The sensing platform can be easily regenerated for more than 20 and 3 cycles upon acid or ion depletion, respectively. Overall, the photocontrolled properties of the silk composites combined with a straightforward preparation method render them suitable as porous materials and scaffolds with tunable compliance and reusable nanoprobes for real time optical detection in biomedical, environmental, and industrial applications.

摘要

本文介绍了一种光致变色螺吡喃掺杂丝素/聚氧化乙烯纳米纤维,这种纤维将丝的吸引力和生物相容性与螺吡喃掺杂剂的光控和可逆光学、机械和化学响应结合在一起。事实证明,纤维垫的吸收和发射信号以及杨氏模量随交替的紫外光和可见光照射的可逆变化归因于螺吡喃形式向其极性硫代色满形式的可逆光致变色。最重要的是,与分散在溶液中的酸性蒸气以及重金属离子的相互作用会导致复合发射谱中出现分析物特异性的光谱变化,并伴有特征颜色变化。由于纳米纤维网络的高表面积与体积比,这些相互作用非常迅速,因此能够在 30-60 秒的时间范围内进行光学和视觉检测。在酸或离子耗尽后,传感平台可以分别再生 20 次以上和 3 次循环。总的来说,丝复合材料的光控特性结合简单的制备方法,使它们适合作为多孔材料和支架,具有可调顺应性和可重复使用的纳米探针,可用于生物医学、环境和工业应用中的实时光学检测。

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