费斯特共振能量转移
猝灭(荧光)
化学
电子顺磁共振
荧光
选择性
组合化学
硝基呋喃
光化学
电子转移
光致变色
水溶液
苦味酸
材料科学
拓扑(电路)
光诱导电子转移
纳米技术
碳酰肼
能量转移
钇
钆
分解
共振(粒子物理)
作者
Shufan Chen,Yi Zhou,Rui Liu,Shiqi Lu,Lulu Zhang,Ziyue Wang,Yanli Gai,Kecai Xiong
标识
DOI:10.1021/acs.cgd.5c01756
摘要
Two novel viologen-based yttrium metal–organic frameworks, [Y 4 (H 2 bcbp)(bcbp)(μ 2 -C 2 O 4 ) 6 (H 2 O) 2 Cl 2 ]·4H 2 O ( 1 ) and [Y 2 (bcbp)(μ 2 -C 2 O 4 ) 2 (NO 3 ) 2 ]·H 2 O ( 2 ), were solvothermally synthesized and characterized. Compound 1 displays a three-dimensional (3D) structure with a dia (sqc-6) topology based on (6,3)-hcb yttrium-oxalate layers. Compound 2 displays a 3D structure with a 2-fold interpenetrating mog topology based on yttrium-oxalate chains. Both compounds possess photochromic behaviors induced by photoinduced electron transfer (PET) generating viologen radicals, as confirmed by UV–vis and EPR spectroscopy. Based on these properties, compound 1 is utilized in inkless and erasable printing. Furthermore, compound 1 can serve as a highly sensitive and selective fluorescence sensor for nitrofuran antibiotics (NFZ and NFT) in aqueous systems, with low detection limits LODs (2.11 × 10 –7 M for NFZ and 1.56 × 10 –7 M for NFT), high quenching coefficients K SV (5.43 × 10 4 M –1 for NFZ and 3.82 × 10 4 M –1 for NFT), and excellent selectivity and recyclability. The quenching mechanism is attributed to a synergistic effect of the inner filter effect (IFE), fluorescence resonance energy transfer (FRET), and PET. This work highlights the potential of viologen-based MOFs in smart materials and environmental monitoring.
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