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Development of calix4arene-functionalized microcantilever array sensing system for the rapid, sensitive and simultaneous detection of metal ions in aqueous solutions

机译:开发calix 4芳烃功能化微悬臂梁阵列传感系统,用于快速,灵敏,同时检测水溶液中的金属离子

摘要

The work described in this thesis was conducted with the aim of: 1) investigating the binding capabilities of calix[4]arene-functionalized microcantilevers towards specific metal ions and 2) developing a new16-microcantilever array sensing system for the rapid, and simultaneous detection of metal ions in fresh water.udPart I of this thesis reports on the use of three new bimodal calix[4]arenes (methoxy, ethoxy and crown) as potential host/guest sensing layers for detecting selected ions in dilute aqueous solutions using single microcantilever experimental system. In this work it was shown that modifying the upper rim of the calix[4]arenes with a thioacetate end group allow calix[4]arenes to self-assemble on Au(111) forming complete highly ordered monolayers. It was also found that incubating the microcantilevers coated with 5 nm of Inconel and 40 nm of Au for 1 h in a 1.0 M solution of calix[4]arene produced the highest sensitivity. Methoxy-functionalized microcantilevers showed a definite preference for Ca²⁺ ions over other cationic guests and were able to detect trace concentration as low as 10⁻¹² M in aqueous solutions. Microcantilevers modified with ethoxy calix[4]arene displayed their highest sensitivity towards Sr²⁺ and to a lesser extent Ca²⁺ ions. Crown calix[4]arene-modified microcantilevers were however found to bind selectively towards Cs⁺ ions. In addition, the counter anion was also found to contribute to the deflection. For example methoxy calix[4]arene-modified microcantilever was found to be more sensitive to CaCl₂ over other water-soluble calcium salts such as Ca(NO₃)₂ , CaBr₂ and CaI₂. These findings suggest that the response of calix[4]arene-modified microcantilevers should be attributed to the target ionic species as a whole instead of only considering the specific cation and/or anion.udPart II presents the development of a 16-microcantilever sensor setup. The implementation of this system involved the creation of data analysis software that incorporates data from the motorized actuator and a two-axis photosensitive detector to obtain the deflection signal originating from each individual microcantilever in the array. The system was shown to be capable of simultaneous measurements of multiple microcantilevers with different coatings. A functionalization unit was also developed that allows four microcantilevers in the array to be coated with an individual sensing layer one at the time. Because of the variability of the spring constants of different cantilevers within the array, results presented were quoted in units of surface stress unit in order to compare values between the microcantilevers in the array.
机译:进行本文中描述的工作的目的是:1)研究杯[4]芳烃官能化的微悬臂梁对特定金属离子的结合能力; 2)开发新的16微悬臂梁阵列传感系统,用于快速,同时检测本论文的第一部分报告了使用三种新型双峰杯[4]芳烃(甲氧基,乙氧基和冠状化合物)作为潜在的宿主/客体传感层,使用单一离子水检测稀水溶液中的选定离子的情况。微悬臂梁实验系统。在这项工作中表明,用硫代乙酸酯端基修饰杯[4]芳烃的上边缘可以使杯[4]芳烃在Au(111)上自组装,形成完整的高度有序的单层。还发现,将涂有5 nm铬镍铁合金和40 nm Au的微悬臂在1.0M杯[4]芳烃溶液中孵育1小时可获得最高灵敏度。甲氧基官能化的微悬臂梁比其他阳离子客体更显示出对Ca 2+离子的偏爱,并且能够检测水溶液中低至10 12 M的痕量浓度。用乙氧基杯[4]芳烃改性的微悬臂梁对Sr 2+和较低程度的Ca 2+离子显示出最高的敏感性。然而,发现皇冠杯[4]芳烃修饰的微悬臂梁选择性结合Cs 4+离子。另外,还发现抗衡阴离子有助于挠曲。例如,发现甲氧基杯[4]芳烃改性的微悬臂梁比其他水溶性钙盐如Ca(NO 3)2,CaBr 2和CaI 2对CaCl 2更为敏感。这些发现表明,杯[4]芳烃修饰的微悬臂梁的响应应归因于整个目标离子物种,而不是仅考虑特定的阳离子和/或阴离子。 udPart II介绍了16微悬臂梁传感器的发展。设定。该系统的实施涉及数据分析软件的创建,该数据分析软件将来自电动执行器和两轴光敏检测器的数据合并在一起,以获得源自阵列中每个微悬臂梁的偏转信号。该系统被证明能够同时测量具有不同涂层的多个微悬臂梁。还开发了一种功能化单元,该功能化单元一次可在阵列中的四个微悬臂上涂覆一层单独的传感层。由于阵列中不同悬臂的弹簧常数的可变性,因此以表面应力单位为单位引用给出的结果,以便比较阵列中微悬臂之间的值。

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    Alodhayb Abdullah;

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  • 年度 2016
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