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一种杯芳烃促进羧基苯基卟啉薄膜的解聚和传感性能。

A Calixarene Promotes Disaggregation and Sensing Performance of Carboxyphenyl Porphyrin Films.

作者信息

Flores-Sánchez Rubén, Gámez Francisco, Lopes-Costa Tânia, Pedrosa José María

机构信息

Department of Physical, Chemical and Natural Systems, Universidad Pablo de Olavide, Seville 41013, Spain.

Departamento de Química Física Aplicada, Universidad Autónoma de Madrid, Francisco Tomás y Valiente 7, Madrid 28049, Spain.

出版信息

ACS Omega. 2020 Mar 17;5(12):6299-6308. doi: 10.1021/acsomega.9b03612. eCollection 2020 Mar 31.

Abstract

The aggregation of a free base porphyrin, -tetrakis(4-carboxyphenyl)porphyrin and its Zn(II) derivative have been studied at the air/water interface in the presence of a --butylcalyx[8]arene matrix. The mixed Langmuir films were obtained either by premixing the compounds (cospreading) or by sequential addition. The negative deviation from the additivity rule of the cospread films is indicative of a comparatively good miscibility that was further confirmed by Brewster angle microscopy. The images of the cospread mixed films showed a more homogeneous morphology in comparison with those of pure porphyrin that is attributed to a deeper and earlier self-aggregation state at the interface of the latter. These results were similar for both porphyrins and revealed the disaggregating effect of the calixarene matrix. The orientation and association of the porphyrins were studied by UV-visible reflection spectroscopy at the interface. A different aggregation behavior can be inferred from the resulting spectra, and a higher orientational freedom was observed when the molecules were less aggregated in mixed cospreaded films. The disaggregating effect was retained when the films were transferred to solid supports as demonstrated by UV-visible spectroscopy. Finally, the potential use of these Langmuir-Blodgett films as optical gas sensors was tested against ammonia and amine vapors. The changes in the spectrum in the presence of the volatile compounds are higher for the Zn-porphyrin. The presence of calixarene enhances the sensor response due to the higher accessibility of volatiles to disaggregated porphyrins in the mixed films. The resulting changes were mapped into a numerical matrix that can be transformed into a color pattern to easily discriminate among these gases.

摘要

在存在对叔丁基杯[8]芳烃基质的情况下,研究了游离碱卟啉、四(4 - 羧基苯基)卟啉及其锌(II)衍生物在空气/水界面的聚集情况。通过预混合化合物(共铺展)或顺序添加获得混合朗缪尔膜。共铺展膜的加和规则负偏差表明具有相对良好的混溶性,这通过布鲁斯特角显微镜进一步得到证实。与纯卟啉的膜相比,共铺展混合膜的图像显示出更均匀的形态,这归因于后者在界面处更深且更早的自聚集状态。两种卟啉的这些结果相似,并揭示了杯芳烃基质的解聚作用。通过界面处的紫外 - 可见反射光谱研究了卟啉的取向和缔合。从所得光谱可以推断出不同的聚集行为,并且当分子在共铺展混合膜中聚集较少时,观察到更高的取向自由度。如紫外 - 可见光谱所示,当膜转移到固体支持物上时,解聚作用得以保留。最后,针对氨和胺蒸气测试了这些朗缪尔 - 布洛杰特膜作为光学气体传感器的潜在用途。对于锌卟啉,在存在挥发性化合物时光谱的变化更大。杯芳烃的存在增强了传感器响应,这是由于挥发性物质在混合膜中对解聚卟啉的可及性更高。所得变化被映射到一个数字矩阵中,该矩阵可以转换为颜色模式以轻松区分这些气体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ef92/7114168/3cfad43f8a28/ao9b03612_0008.jpg

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