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首页> 外文期刊>Luminescence: The journal of biological and chemical luminescence >A highly selective fluorescent chemosensor for Cu2+: synthesis and properties of a rhodamine B-containing diarylethene
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A highly selective fluorescent chemosensor for Cu2+: synthesis and properties of a rhodamine B-containing diarylethene

机译:用于Cu2 +的高选择性荧光化学传感器:含罗丹明B的二芳基乙烯的合成和性质

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摘要

A diarylethene bearing a triazole-linked rhodamine B unit was synthesized. Its fluorescent emission was significantly enhanced in the presence of protons or Cu2+ due to transformation from the pirocyclic form to open-ring form. The fluorescence was quenched sequentially upon irradiation with 297nm light based on the intramolecular fluorescence resonance energy transfer mechanism. In an acetonitrile: water binary solvent (1: 1v/v), the compound showed significant fluorescent enhancement for Cu2+ compared with a wide range of tested metal ions with a fast response and a limit of detection of 2.86x10(-8)molL(-1). Using Cu2+ and UV light as the chemical inputs, and fluorescence intensity at 597nm as the output, a logic gate was developed at the molecular level. Moreover, the compound can be used with a high accuracy to detect Cu2+ in a natural water sample.
机译:合成载有三唑连接的罗丹明B单元的二芳基乙烯。 由于从偏循环形式转化为开环形式,在质子或Cu2 +存在下,其荧光发射显着增强。 基于分子内荧光共振能量转移机制,在用297nm光照射时依次淬灭荧光。 在乙腈:水二元溶剂(1:1V / V)中,该化合物对Cu2 +显着的荧光增强与具有快速响应的宽范围的测试金属离子和2.86×10(-8)莫尔的检测限相比 -1)。 使用Cu2 +和UV光作为化学输入,并且在597nm处为输出时的荧光强度,在分子水平上开发逻辑门。 此外,该化合物可以高精度地使用,以检测天然水样中的Cu2 +。

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