首页> 外文期刊>ACS Omega >Supramolecular Sensing of 2,4,6-Trinitrophenol by a Tetrapyrenyl Conjugate of Calix[4]arene: Applicability in Solution, in Solid State, and on the Strips of Cellulose and Silica Gel and the Image Processing by a Cellular Phone
【24h】

Supramolecular Sensing of 2,4,6-Trinitrophenol by a Tetrapyrenyl Conjugate of Calix[4]arene: Applicability in Solution, in Solid State, and on the Strips of Cellulose and Silica Gel and the Image Processing by a Cellular Phone

机译:Colix [4]芳烃的四键蛋白的超分子感测2,4,6-三硝基苯酚:在溶液中的适用性,固态,纤维素和硅胶条以及细胞手机的图像处理

获取原文
           

摘要

A calix[4]arene conjugate possessing a tetrapyrenyl moiety at its upper rim (R) is designed as a receptor for sensing trinitrophenol (TNP). To understand the role of the calix[4]arene platform and that of pyrenyl moieties in R, two other control molecules were synthesized. These are as follows: the one possessing a tetraphenyl moiety in place of tetrapyrenyl (R1) and the other one is a p-pyrenyl-hydroxy benzene (R2) that is devoid of the calix[4]arene platform. The R shows high sensitivity toward TNP in tetrahydrofuran (THF) over eleven other nitroaromatic compounds (NACs) studied by exhibiting large fluorescence enhancement and hence is selective to TNP over the other NACs studied. However, the control molecules R1 and R2 showed only marginal fluorescence enhancement, supporting the need of a calixarene platform and the presence of a tetrapyrenyl moiety in the receptor system for the selective sensing of TNP. Further, R1 and R2 are not suitable for sensing, since these exhibit similar fluorescence response over several NACs studied. The binding of TNP by R has been addressed by fluorescence titration and isothermal titration calorimetry. The nature of the complexation of TNP by R has been revealed by the computational calculations, wherein the data showed the entrapment of TNP by two adjacent pyrene moieties via π–π stacking interactions. Such host–guest complexation is expected to restrict the mobility of the pyrene moieties present in R. The reduction of the flexibility of the pyrenyl moieties of R upon TNP binding is evidenced by the 1H NMR spectral study, wherein this acts as an additional evidence for the complexation. In the present study, the sensing of TNP by R has been shown in THF solution, on the surface of silica gel and the cellulose paper to result in lowest detection limits (LODs) of 1.5, 3.5, and 6.5 μM, respectively. Even the solid mixture of R and TNP showed LOD of 2.1 μmol. Since R is expected to show supramolecular aggregation that is dependent on the guest species, the corresponding details were probed by microscopy techniques, using scanning electron microscopy, atomic force microscopy, and transmission electron microscopy methods, and significant changes in the aggregation of R upon interaction with TNP were found. Such aggregation is responsible for the observed fluorescence enhancement. Thus, the tetrapyrenyl calix[4]arene conjugate (R) acts as a sensitive and robust platform for selective detection of TNP from a mixture of nitroaromatic compounds (NACs) wherein the fluorescence intensities can be imaged and managed by a cellular phone.
机译:在其上边缘(R)处具有四嘧苯基部分的碱[4]芳烃缀合物被设计为用于检测三硝基苯酚(TNP)的受体。要了解CALIX [4]芳烃平台的作用以及R中的芘部分的作用,合成了另外两种对照分子。这些如下:具有四苯基部分代替苯乙烯基(R1)的苯基(R1),是粘蛋白羟基苯(R2),其含量粘蛋白[4]芳烃平台。该R显示通过表现出大荧光增强研究的110氨基呋喃(THF)在四氢呋喃(THF)中对TNP的高敏感性,因此在所研究的其他NACS上选择性地对TNP选择性。然而,对照分子R1和R2仅显示了边缘荧光增强,支持Calixarene平台的需要和受体系统中的四键基部分的存在,以选择性感测TNP。此外,R1和R2不适合于感测,因为这些在研究的几种NAC上表现出类似的荧光反应。通过荧光滴定和等温滴定热量来解决TNP对R的结合。通过计算计算已经揭示了TNP络合的性质,其中数据显示通过π-π堆叠相互作用,通过两个相邻的芘部分夹杂着TNP。预计此类宿主 - 客销综合性将限制R的芘部分的迁移率。1H NMR光谱研究证明了r在TNP结合时对TNP结合的柔韧性的降低,其中这是额外的证据综合化。在本研究中,在硅胶表面上的THF溶液中显示出TNP的STNP和纤维素纸的感测分别导致1.5,3.5和6.5μm的最低检测限率(LOD)。甚至R和TNP的固体混合物也显示为2.1μmol的床位。由于R预期显示依赖于客体物种的超分子聚集,因此使用扫描电子显微镜,原子力显微镜和透射电子显微镜方法探测了相应的细节,以及透射电子显微镜方法,并在相互作用时聚集的显着变化发现了TNP。这种聚集负责观察到的荧光增强。因此,Tetrapyrenyl Colix [4]芳烃缀合物(R)充当敏感的且鲁棒平台,用于从硝基芳族化合物(NACS)的混合物中选择性地检测TNP,其中荧光强度可以通过细胞电话进行成像和管理。

著录项

相似文献

  • 外文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号