首页> 外文期刊>Analytical chemistry >Dual Binding Site Assisted Chromogenic and Fluorogenic Recognition and Discrimination of Fluoride and Cyanide by a Peripherally Borylated Metalloporphyrin: Overcoming Anion Interference in Organoboron Based Sensors
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Dual Binding Site Assisted Chromogenic and Fluorogenic Recognition and Discrimination of Fluoride and Cyanide by a Peripherally Borylated Metalloporphyrin: Overcoming Anion Interference in Organoboron Based Sensors

机译:周边结合硼化的金属卟啉对氟和氰的双重结合位点辅助发色和发荧光的识别和区分:克服基于有机硼的传感器中的阴离子干扰

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摘要

Peripherally triarylborane decorated porphyrin (2) and its Zn(II) complex (3) have been synthesized. Compound 3 contains of two different Lewis acidic binding sites (Zn(II) and boron center). Unlike all previously known triarylborane based sensors, the optical responses of 3 toward fluoride and cyanide are distinctively different, thus enabling the discrimination of these two interfering anions. Metalloporphyrin 3 shows a multiple channel fluorogenic response toward fluoride and cyanide and also a selective visual colorimetric response toward cyanide. By comparison with model systems and from detailed photophysical studies on 2 and 3, we conclude that the preferential binding of fluoride occurs at the peripheral borane moieties resulting in the cessation of the EET (electronic energy transfer) process from borane to porphyrin core and with negligible negetive cooperative effects. On the other hand, cyanide binding occurs at the Zn(II) core leading to drastic changes in its absorption behavior which can be followed by the naked eye. Such changes are not observed when the boryl substituent is absent (e.g., Zn-TPP and TPP). Compounds 2 and 3 were also found to be capable of extracting fluoride from aqueous medium.
机译:合成了三芳基硼烷修饰的卟啉(2)及其锌(II)配合物(3)。化合物3包含两个不同的路易斯酸性结合位点(Zn(II)和硼中心)。与以前所有基于三芳基硼烷的传感器不同,3对氟和氰化物的光学响应明显不同,因此可以区分这两种干扰阴离子。金属卟啉3显示出对氟化物和氰化物的多通道荧光反应,以及对氰化物的选择性视觉比色反应。通过与模型系统进行比较以及对2和3进行的详细光物理研究,我们得出结论,氟化物的优先结合发生在外围的硼烷部分上,导致终止了从硼烷到卟啉核的EET(电子能量转移)过程,并且可以忽略不计协同作用。另一方面,氰化物结合发生在Zn(II)核上,导致其吸收行为发生剧烈变化,肉眼可以观察到。当不存在硼基取代基(例如,Zn-TPP和TPP)时,未观察到这种变化。还发现化合物2和3能够从水性介质中萃取氟化物。

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