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Preparation and properties of photochromic bacterial cellulose nanofibrous membranes

机译:光致变色细菌纤维素纳米纤维膜的制备与性能

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摘要

The photochromic bacterial cellulose (BC) nanofibrous membranes containing 1′,3′,3′-trimethyl-6-nitrospiro(2H-1-benzopyran-2,2′-indoline) (NO2SP) were successfully prepared by surface modification of BC nanofibers with spiropyran photochromes, and their physical and photochromic properties were characterized. The FTIR spectra indicated the interaction between BC and NO2SP which leads to the uniform dispersion of NO2SP in the nanofibrous membrane. SEM results demonstrated that the introduction of NO2SP maintains the nanofibrous network structure of BC. UV/vis spectrometry of the resulting BC-NO2SP revealed that the membranes show reversible photochromic property by changing their color from colorless to pink forming a merocyanine structure upon UV irradiation, and returning back again to colorless spiropyran structure by visible light. The contact angle of the BC-NO2SP with water was found to be reversibly regulated due to the reversible isomerization of the spiropyran moieties in BC-NO2SP. The result indicates that the surface modification with spiropyran photochromes expands new applications of BC nanofibers and such photochromic nanofibers with excellent photosensitivity have great potentials for sensitive displays, biosensors and other optical devices.
机译:含有1',3',3'-三甲基-6-硝基螺(2H-1-苯并吡喃-2,2'-二氢吲哚)(NO 2 SP)的光致变色细菌纤维素(BC)纳米纤维膜通过用螺吡喃光致变色剂对BC纳米纤维进行表面修饰成功制备了纳米纤维素,并对其物理和光致变色特性进行了表征。 FTIR光谱表明BC和NO 2 SP之间的相互作用,导致NO 2 SP在纳米纤维膜中的均匀分散。 SEM结果表明,NO 2 SP的引入保持了BC的纳米纤维网络结构。所得BC-NO 2 SP的UV / vis光谱分析表明,膜的颜色可逆,可通过将其颜色从无色变为粉红色而形成可逆的光致变色性质,并在紫外线照射下形成部花青结构,然后再返回无色螺吡喃可见光的结构。由于螺吡喃部分在BC-NO 2 SP中的可逆异构化,发现BC-NO 2 SP与水的接触角可逆调节。结果表明,螺吡喃型光致变色剂的表面改性扩展了BC纳米纤维的新应用,并且这种具有出色光敏性的光致变色纳米纤维在敏感显示器,生物传感器和其他光学设备上具有巨大潜力。

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