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A stable 3D TbIII -based metal-organic framework [Tb(BPDC)2 ]⋅(CH3 )2 NH2 (DUT-101) was synthesized, and it is the first efficient dual-channel luminescence sensor for aqueous UO22+ ions. DUT-101 contains an anionic three-dimensional framework and protonated dimethylamine molecules embedded within the channels. The intense green emission of DUT-101 could be highly selectively and sensitively quenched by UO22+ ions even in the presence of other competing metal ions. A possible sensing mechanism was proposed based on both suppression of luminescence resonance energy transfer and enhancement of intermolecular electron transfer. Furthermore, visual green fluorescent test papers based on DUT-101 were fabricated and could be used to discriminate UO22+ ions among various metal ions.

作者:Junwei, Ye;Raji F, Bogale;Yangwei, Shi;Yanzhen, Chen;Xigang, Liu;Siqi, Zhang;Yaoyao, Yang;Jianzhang, Zhao;Guiling, Ning

来源:Chemistry (Weinheim an der Bergstrasse, Germany) 2017 年 23卷 32期

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作者:
Junwei, Ye;Raji F, Bogale;Yangwei, Shi;Yanzhen, Chen;Xigang, Liu;Siqi, Zhang;Yaoyao, Yang;Jianzhang, Zhao;Guiling, Ning
来源:
Chemistry (Weinheim an der Bergstrasse, Germany) 2017 年 23卷 32期
标签:
crystal structure luminescence metal-organic framework quenching uranyl ions
A stable 3D TbIII -based metal-organic framework [Tb(BPDC)2 ]⋅(CH3 )2 NH2 (DUT-101) was synthesized, and it is the first efficient dual-channel luminescence sensor for aqueous UO22+ ions. DUT-101 contains an anionic three-dimensional framework and protonated dimethylamine molecules embedded within the channels. The intense green emission of DUT-101 could be highly selectively and sensitively quenched by UO22+ ions even in the presence of other competing metal ions. A possible sensing mechanism was proposed based on both suppression of luminescence resonance energy transfer and enhancement of intermolecular electron transfer. Furthermore, visual green fluorescent test papers based on DUT-101 were fabricated and could be used to discriminate UO22+ ions among various metal ions.