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首页> 外文期刊>Spectrochimica acta, Part A. Molecular and biomolecular spectroscopy >A new fluorene derived Schiff-base as a dual selective fluorescent probe for Cu2+ and CN-
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A new fluorene derived Schiff-base as a dual selective fluorescent probe for Cu2+ and CN-

机译:一种新的芴衍生的Schiff-碱基作为Cu2 +和CN的双选式荧光探针

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摘要

A new fluorene based fluorogenic chemosensor, 2-[(9H-Fluoren-2-ylmethylene)-amino]-phenol (L), has been designed, synthesized, and characterized by CHN analyses and different spectroscopic methods. This turn-on fluorogenic chemosensor shows high selectivity and sensitivity toward Cu2+ and CN- with low detection limits of 1.54 x 10(-9) M and 1.83 x 10(-7) M, respectively. The stoichiometry ratio of L-Cu2+ in solution is 1:1, by the method of Job's plot and ESI-MS. The microcrystalline solid product of the chemosensor reaction with copper is characterized as CuL2. The chi T value for CuL2 is temperature independent at a value of 0.403 cm(3) K mol(-1), which is in agreement with a mononuclear copper(II) complex with an isotropic g-value of 2.075. The fluorescence turn-on recognition process for detection of Cu2+ is attributed to the restricted imine isomerization and blocking of intramolecular charge transfer (ICT) quenching process in the analyte-bound sensor. The selectivity of L for Cu2+ is based on the chelation-enhanced fluorescence effect (CHEF) mechanism. Other interfering ions such as Na+, K+, Ca2+, Mg2+, Ag+, Fe2+, Fe3+, Co2+, Ni2+, Zn2+, Cd2+, Hg2+, Mn2+, Pb2+ and Al3+, show no change in the fluorescence intensity of L in the presence of Cu2+. Furthermore, the compound L can be used as a fluorescence and colorimetric sensor for selective detection of CN- over a number of other anions based on the nucleophilic addition to the imine C=N bond, with consequent hydrogen bond formation and electrostatic interaction of the resulting product with K+. The sensing mechanism for CN- was theoretically supported by DFT calculations. (C) 2018 Elsevier B.V. All rights reserved.
机译:通过CHN分析和不同的光谱方法设计了一种新的芴基荧光化学传感器,2 - [(9H-氟-2-基甲基)-氨基] -phenol(L)。该开启荧光化学传感器分别显示出高的选择性和敏感性,均为Cu2 +和CN-的敏感性,低检测限为1.54×10(-9)m和1.83×10(-7)m。通过作业的图和ESI-MS的方法,溶液中L-CU2 +的化学计量比为1:1。用铜的化学传感器反应的微晶固体产物表征为CUL2。 CUL2的CHI T值是0.403cm(3)克莫(-1)的值无关的温度,其与具有2.075各向同性的单核铜(II)络合物一致。荧光开启识别处理检测的Cu2 +的归因于受限制的亚胺异构化和分子内电荷转移(ICT)淬火工艺中的分析物结合的传感器的阻断。 L对于Cu2 +的选择性基于螯合增强的荧光效应(厨师)机制。其他干扰离子如Na +,K +,Ca 2 +,Mg 2 +,Ag +,Fe 2 +,Fe3 +,CO 2 +,Ni2 +,Zn2 +,CD2 +,Hg2 +,Mn 2 +,Pb2 +,Al3 +,在Cu 2+存在下L的L荧光强度没有变化。此外,化合物L可以用作荧光和比色传感器,用于基于亚胺C = N键的亲核外核的核性核核核核细胞层选择性地检测CN-在亚胺C = N键的许多阴离子上,随后产生的氢键形成和所得的静电相互作用产品k +。通过DFT计算理论上支持CN的传感机制。 (c)2018年elestvier b.v.保留所有权利。

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