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A highly fluorescent post-modified metal organic framework probe for selective, reversible and rapid carbon dioxide detection

机译:高度荧光后改性金属有机框架探针,用于选择性,可逆和快速二氧化碳检测

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摘要

The monitoring of the arterial and exhaled CO2 is of great importance. Despite of many reports on metal organic frameworks (MOFs) in adsorbing and separating CO2, the application of fluorescent MOFs probes for CO2 detection was rarely reported. A new fluorescent MOF probe UIO.66-ONa for CO2 detection was developed via post-synthesis of UIO-66-NH2 through a Schiff base reaction with salicylaldehyde and further treatment with sodium hydroxide. This probe exhibited a remarkable fluorescence color change from green to blue and showed excellent sensitivity and selectivity for CO2 sensing in solution. The detection limit was as low as 3.5 x 10(-7)M. The excellent sensing performance of UIO-66-ONa was ascribed to the efficient reaction between sodium phenolic group and CO2, which led to the transformation of UIO-66-ONa to UIO-66-OH as evidenced by the emission spectra. This post-synthetic modification idea provided a new strategy for designing fluorescent MOFs probes for CO2 detection.
机译:对动脉和呼出的二氧化碳的监测非常重要。 尽管在吸附和分离CO 2上有许多关于金属有机骨架(MOF)的报告,但很少报道荧光MOFS探针的应用。 通过与水杨醛的Schiff基础反应和用氢氧化钠进一步处理,通过合成UIO-66-NH2的后合成和进一步处理来开发用于CO 2检测的新的荧光MOF探针UIO.66-ONA。 该探针从绿色到蓝色表现出显着的荧光变化,并显示出优异的溶解度和选择性对溶液中的CO 2感测。 检出限量低至3.5×10(-7)m。 UIO-66-ONA的优异感测性能归因于酚醛基团和CO2之间的有效反应,其导致UIO-66-ONA转化为UIO-66-OH,如发射光谱所证明的。 该综合性修改思想为设计CO2检测提供了一种设计荧光MOFS探针的新策略。

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