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Hybrid functionalised mesoporous silica-polymer composites for enhanced analyte monitoring using optical sensors

机译:杂化功能化介孔二氧化硅-聚合物复合材料,可使用光学传感器增强对分析物的监测

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We report herein a new optical sensor for the colorimetric monitoring of aqueous amines designed by anchoring a suitable reactand on a hybrid material that was further incorporated on a polymeric matrix. An azo chromophore containing a trifluoroacetophenone moiety was used as signalling reporter. In this system colour modulation is a consequence of the reversible reaction of the amine with the trifluoroacetyl group that results in the formation of a hemiaminal. Based on this approach but at the same time trying to enhance selectivity the chromoreactand was anchored in a first step onto suitable mesoporous nanoscopic hydrophobic pockets. As a mesoporous system we selected a UVM-7 solid (a MCM41-type material) containing a homogeneous distribution of pores of about 3 nm and a specific surface area of over 1000 m~2/g. This material was chemically modified to yield a trifluoroacetylazobenzene indicator dye within the pores, resulting in the hybrid material S3. It was found that whereas the analogous trifluoroacetylazobenzene dye in solution gives an unspecific response, the hybrid material S3 shows enhanced features in terms of selectivity, only reacting with the not-too-large but lipophilic enough amines n-octylamine and n-decylamine. The material S3 reacts with neither small hydrophilic amines (due to the hydrophobicity of the inner pores in S3) nor very large aliphatic amines (due to the size of the pore). In the second part of this work a composite material (P-S3) was prepared by mixing hydrophilic polyurethane polymer and S3. The X-ray diffraction patterns of P-S3 displays the characteristic intense peak of the MCM-41 type mesoporous material and TEM images show a homogeneous dispersion of the nanometric mesoporous particles into the polymeric matrix. The measurements were carried out in a flow-through module connected to an optical fibre via a Y-probe at pH 9.5 (borax buffer). The P-S3 composite retains the favourable features in terms of selectivity shown by S3 and only displays a clear change in colour for n-octylamine or n-decylamine, but no response to the remaining linear primary amines. The response time of the sensor P-S3 to solutions of these amines was in the range of a few seconds, the regeneration time was between 5 to 10 min and the detection limit was 6 x 10~(-4) mol L~(-1). The sensor response was reproducible and reversible.
机译:我们在这里报告了一种新的光学传感器,用于比色监测含水胺,方法是将合适的反应物锚定在杂化材料上,该杂化材料进一步掺入聚合物基质中。含有三氟苯乙酮部分的偶氮发色团用作信号传导报告分子。在该系统中,颜色调节是胺与三氟乙酰基可逆反应的结果,该反应导致半缩醛的形成。基于这种方法,但同时试图提高选择性,第一步将发色团固定在合适的介孔纳米疏水袋上。作为介孔系统,我们选择了UVM-7固体(MCM41型材料),该固体包含均匀分布的约3 nm的孔和超过1000 m〜2 / g的比表面积。对该材料进行化学修饰以在孔内产生三氟乙酰基偶氮苯指示剂染料,从而得到杂化材料S3。已经发现,尽管溶液中类似的三氟乙酰基偶氮苯染料给出了非特异性响应,但是杂化材料S3在选择性方面显示出增强的特征,仅与不是太大但亲脂性足够的胺正辛胺和正癸胺反应。材料S3既不与小的亲水胺(由于S3中内部孔的疏水性)反应,也不与很大的脂族胺(由于孔的大小)反应。在这项工作的第二部分中,通过将亲水性聚氨酯聚合物和S3混合来制备复合材料(P-S3)。 P-S3的X射线衍射图显示了MCM-41型介孔材料的特征性强峰,而TEM图像显示了纳米介孔颗粒均匀分散在聚合物基质中。在pH 9.5的Y型探针(硼砂缓冲液)连接到光纤的流通模块中进行测量。 P-S3复合材料保留了S3所示的选择性方面的有利特征,并且仅显示正辛胺或正癸胺的明显颜色变化,但对其余的线性伯胺没有反应。传感器P-S3对这些胺溶液的响应时间在几秒钟的范围内,再生时间在5至10分钟之间,检出限为6 x 10〜(-4)mol L〜(- 1)。传感器的响应是可重现和可逆的。

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