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Heating promoted fluorescent recognition of Cu2+ with high selectivity and sensitivity based on spiropyran derivative

机译:加热促进Cu2 +的荧光识别,基于螺燕尾衍生物的选择性和灵敏度

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摘要

A spiropyran derivative containing an ethyl group (SPEt) was applied for fluorescent recognition of Cu2+. With Cu2+ addition, the SPEt-contained solution using a mixed solvent of DMF/H2O (9/1, v/v) showed a very strong characteristic emission peak with high quantum yield which is 4.3 times that of the pure SPEt solution. As a result, Cu2+ was successfully picked out from totally 17 kinds of common metal ions and a detection limit as low as 14.9 fM had been achieved in using this assay system. Particularly, the recognition process was temperature- and time-dependent and could be effectively promoted by heating. In addition, SPEt had been used to image and detect Cu2+ in mussels. Thus, our results in this study provided an exclusive Cu2+ recognition via fluorometry in wide temperature, time, and dynamic ranges of assay, enabled a femtomolar scale detection of Cu2+ by spiropyran derivative, and showed a promising imaging ability of Cu2+ in marine living organisms. (C) 2019 Elsevier B.V. All rights reserved.
机译:施用含有乙基(SPET)的螺吡喃衍生物用于Cu 2+的荧光识别。使用Cu2 +另外,使用DMF / H 2 O(9/1,V / V)的混合溶剂的含有SPET溶液的溶液显示出具有高量子产率的非常强的特征发射峰,其纯Spet溶液的4.3倍。结果,在使用该测定系统方面已经成功地从完全17种普通金属离子中取出了Cu2 +,并且在使用该测定系统中已经实现了低至14.9cm的检测极限。特别地,识别过程是温度和时间依赖性的,并且可以通过加热有效地促进。此外,Spet已被用于图像和检测贻贝的CU2 +。因此,我们在本研究中的结果提供了通过荧光法在宽温度,时间和动态测定范围内的独有Cu2 +识别,使Spiropyran衍生物的Femolar级别检测能够进行Cu2 +,并显示出海洋生物体中Cu2 +的有希望的成像能力。 (c)2019年Elsevier B.V.保留所有权利。

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