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用于溶剂极性光探测的螺吡喃聚合微毛细管涂层。

Spiropyran polymeric microcapillary coatings for photodetection of solvent polarity.

机构信息

CLARITY: Centre for Sensor Web Technologies, National Centre for Sensor Research, Dublin City University, Dublin, Ireland.

出版信息

Langmuir. 2013 Feb 26;29(8):2790-7. doi: 10.1021/la304985p. Epub 2013 Feb 14.

Abstract

Fused silica microcapillaries were functionalized with spiropyran-polymer brushes using surface-initiated ring-opening metathesis polymerization. Based on the inherited spiropyran properties, the functionalized capillaries were successfully used to photoidentify solvents of different polarity when passing through the microcapillary in continuous flow. In the present study, six different solvents (toluene, tetrahydrofuran, acetone, acetonitrile, ethanol, and methanol) can be easily detected while passing through the modified microcapillary by simply irradiating a portion of it with UV light (365 nm). This converts the closed spiropyran moiety to the open merocyanine form, and as a consequence, the microcapillary gains a distinct color and spectral response depending on the polarity of the solvent. The rate of ring-opening of the spiropyran-polymer brushes coatings has been determined in situ in the presence of different solvents, showing that the coloration rate is also influenced by the solvent polarity and therefore can be used as an additional parameter for solvent sensing.

摘要

采用表面引发的开环易位聚合,将螺吡喃-聚合物刷功能化到熔融石英微毛细管上。基于所继承的螺吡喃性质,当这些功能化的毛细管在连续流动中通过微毛细管时,它们可以成功地用于光识别不同极性的溶剂。在本研究中,当一部分微毛细管用紫外光(365nm)照射时,可以很容易地通过简单地穿过改性微毛细管检测到六种不同的溶剂(甲苯、四氢呋喃、丙酮、乙腈、乙醇和甲醇)。这将闭合的螺吡喃部分转化为开式的次甲基蓝形式,因此,微毛细管根据溶剂的极性获得了明显的颜色和光谱响应。在存在不同溶剂的情况下,原位测定了螺吡喃-聚合物刷涂层的开环速率,表明显色速率也受溶剂极性的影响,因此可以用作溶剂传感的附加参数。

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