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基于功能化聚醚大环的钾离子选择性荧光且与pH无关的纳米传感器。

Potassium ion-selective fluorescent and pH independent nanosensors based on functionalized polyether macrocycles.

作者信息

Jarolímová Zdeňka, Vishe Mahesh, Lacour Jérôme, Bakker Eric

机构信息

Department of Inorganic and Analytical Chemistry , University of Geneva , Quai Ernest-Ansermet 30 , CH-1211 Geneva , Switzerland . Email:

Department of Organic Chemistry , University of Geneva , Quai Ernest-Ansermet 30 , CH-1211 Geneva , Switzerland . Email:

出版信息

Chem Sci. 2016 Jan 1;7(1):525-533. doi: 10.1039/c5sc03301b. Epub 2015 Oct 8.

Abstract

We present here a new family of pH insensitive ion-selective optical sensors based on emulsified nanospheres containing densely functionalized 15-, 16-, 18- and 20-membered pyreneamide derivatives. These compounds were successfully synthesized by the reaction of α-diazo-β-ketoesters with cyclic ethers of the desired size in the presence of dirhodium complexes followed by a stereo-selective tandem amidation-transposition process and characterized by H-NMR, C-NMR, IR, HR-ESI-MS, UV-VIS and fluorescence spectroscopy and potentiometry. Their unique structure consisting of a crown ether ring linked to pyrene moieties through amide groups exhibits on-off switchable behavior upon binding of specific cations and allows one to incorporate these chemosensors as fluorescent ionophores into ion-exchange nanospheres. The nanosphere matrix is composed of bis(2-ethylhexyl)sebacate (), poly(ethylene glycol) (), sodium tetrakis 3,5-bis(trifluoromethyl)phenyl borate and pyreneamide functionalized 18-crown-6 ether (). These optode nanoparticles exhibit a strong affinity to the potassium cation over other metal ions up to the millimolar concentration range in an exhaustive detection mode. The logarithmic complex formation constant was determined using the segmented sandwich membrane method and was found to be 6.5 ± 0.3 (SD) in PVC membrane plasticized with NPOE and 5.3 ± 0.3 (SD) in with a 1 : 1 complex stoichiometry. The nanosensors were characterized in broad range of pH from 4 to 10 and the same linear calibration curves were obtained in the concentration range from 10 M to 10 M and thus the pH dependent response was largely overcome. These nanosensors are sufficiently stable, simple to prepare, exhibit a rapid response and their nanoscale size makes them suitable for sensing purposes in samples of limited dimensions.

摘要

我们在此展示了一种新型的对pH不敏感的离子选择性光学传感器家族,该传感器基于含有密集功能化的15元、16元、18元和20元芘酰胺衍生物的乳化纳米球。这些化合物是通过α-重氮-β-酮酯与所需尺寸的环醚在二铑配合物存在下反应,然后经过立体选择性串联酰胺化-转位过程成功合成的,并通过H-NMR、C-NMR、IR、HR-ESI-MS、UV-VIS和荧光光谱以及电位分析法进行了表征。它们独特的结构由通过酰胺基团与芘部分相连的冠醚环组成,在与特定阳离子结合时表现出开-关可切换行为,并允许将这些化学传感器作为荧光离子载体掺入离子交换纳米球中。纳米球基质由癸二酸双(2-乙基己基)酯、聚乙二醇、四(3,5-双(三氟甲基)苯基)硼酸钠和芘酰胺功能化的18-冠-6醚组成。在详尽检测模式下,这些光极纳米颗粒在高达毫摩尔浓度范围内对钾离子表现出比对其他金属离子更强的亲和力。使用分段夹心膜法测定了对数络合形成常数,发现在用NPOE增塑的PVC膜中为6.5±0.3(标准差),在[具体物质未给出]中为5.3±0.3(标准差),络合化学计量比为1∶1。这些纳米传感器在4至10的广泛pH范围内进行了表征,并且在10⁻⁶ M至10⁻² M的浓度范围内获得了相同的线性校准曲线,因此很大程度上克服了pH依赖性响应。这些纳米传感器足够稳定且易于制备,表现出快速响应,并且它们的纳米级尺寸使其适用于有限尺寸样品的传感目的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/195e/5952882/30dc088888a1/c5sc03301b-f1.jpg

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