首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Dual-emission and thermochromic luminescence alkaline earth metal coordination polymers and their blend films with polyvinylidene fluoride for detecting nitrobenzene vapor
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Dual-emission and thermochromic luminescence alkaline earth metal coordination polymers and their blend films with polyvinylidene fluoride for detecting nitrobenzene vapor

机译:双排放和热致变色发光碱土金属配位聚合物及其具有聚偏二氟乙烯的共混膜,用于检测硝基苯蒸气

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Dual emission materials show unique advantages in the areas of detecting analytes or probing a change of environment (e.g. temperature or pressure). In this study, we have harvested three coordination polymers (CPs), [Ca(H2EBTC)(DMF)(2)] (1), [Sr-3(EBTC)(2)(DMSO)(2)] (2) and [Ba-3(HEBTC)(2)(DMSO)(2)] (3) with H4EBTC = 1,1'-ethynebenzene-3,3',5,5'-tetracarboxylic acid, which emit H4EBTC-based fluorescence and phosphorescence under ambient conditions and show thermochromic luminescence behavior in the range 10-300 K. The luminescent blend films of 1-3 with hydrophobic polyvinylidene fluoride (PVDF), labeled as X@PVDF (X = 1-3), were fabricated using a facile and effective drop-casting approach. The formation of blend films much improves the water-stability of alkaline earth metal CPs. The dual emission blend films of CPs were used as the signal transducer for nitrobenzene vapor detection for the first time. Compared to the conventional luminescence probe that used a dispersed solution of luminescent CP powder, the dual emission blend films show excellent performances, e.g. ultrafast luminescence quenching response, lower concentration limit of detection, facile manipulation and cycling utility. Such a strategy using a blend film as the probe can be easily expanded to other probe systems of luminescent CPs, thus opening up a new perspective for the development of efficient and practical film sensing materials.
机译:双发射材料在检测分析物或探测环境变化(例如温度或压力)方面具有独特的优势。在该研究中,我们已经收获了三种配位聚合物(CPS),[Ca(H2EBTC)(DMF)(2)](1),[SR-3(EBTC)(2)(DMSO)(2)](2) [Ba-3(Hebtc)(2)(2)(2)(2)](3)与H4eBTC = 1,1'-乙基苯-3,3',5,5'-四羧酸,其发出基于H4EBTC的荧光和磷光在环境条件下,并在10-300k的范围内显示热致变色的发光行为。用疏水性聚偏二氟乙烯(PVDF)的发光共混膜,标记为x @ pvdf(x = 1-3),使用一种容易和有效的丢弃方法。共混膜的形成大大提高了碱土金属CP的水稳定性。首次使用CPS的双发射共混膜作为用于硝基苯蒸汽检测的信号换能器。与使用发光CP粉末的分散溶液的传统发光探针相比,双排放共混膜显示出优异的性能,例如,超快发光淬火响应,较低的检测浓度限制,容易操纵和循环效用。这种使用混合膜作为探针的这种策略可以容易地扩展到发光CP的其他探针系统,从而开辟了一种新的高效和实用膜传感材料的视角。

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