首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >A novel fluorescence probe for sensing organic amine vapors from a Eu3+ beta-diketonate functionalized bio-MOF-1 hybrid system
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A novel fluorescence probe for sensing organic amine vapors from a Eu3+ beta-diketonate functionalized bio-MOF-1 hybrid system

机译:新型荧光探针,用于感测Eu3 +β-二酮酮官能化的生物MOF-1杂化系统中的有机胺蒸气

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摘要

A classic anionic metal-organic framework (bio-MOF-1, Zn-8(ad)(4)(BPDC)(6)O center dot 2Me(2)NH(2) (BPDC = biphenyl-4,4'- dicarboxylate, Ad = adeninate)) encapsulating Eu3+-beta-diketonate complexes via cation exchange can be used for sensing volatile organic molecules, especially volatile amines, which is of great significance for environmental and industrial monitoring. Subsequently, the Eu3+-beta-diketonate functionalized hybrid system can sensitively detect volatile organic amines by exhibiting a distinct color variation. This means the luminescence intensity of the D-5(0) -> F-7(2) transition can be significantly enhanced in a basic environment such as diethylamine and dramatically decreased in an acidic environment like formic acid. The change in environment is accompanied by a colour change from bright red in diethylamine to light purple in formic acid.
机译:经典的阴离子金属有机骨架(bio-MOF-1,Zn-8(ad)(4)(BPDC)(6)O中心点2Me(2)NH(2)(BPDC =联苯-4,4'-二羧酸盐,Ad =腺嘌呤))通过阳离子交换包封Eu3 +-β-二酮酸盐复合物可用于感测挥发性有机分子,尤其是挥发性胺,这对环境和工业监测具有重要意义。随后,Eu3 +-β-二酮酮酸酯官能化的杂化系统可以通过表现出明显的颜色变化来灵敏地检测挥发性有机胺。这意味着D-5(0)-> F-7(2)过渡的发光强度可以在碱性环境(例如二乙胺)中显着增强,而在酸性环境(例如甲酸)中则可以显着降低。环境的变化伴随着颜色的变化,从二乙胺中的鲜红色变为甲酸中的浅紫色。

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