首页> 外文期刊>Chemistry: A European journal >Multi-Stimuli-Responsive Organometallic Gels Based on Ferrocene-Linked Poly(Aryl Ether) Dendrons: Reversible Redox Switching and Pb~(2+)-Ion Sensing
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Multi-Stimuli-Responsive Organometallic Gels Based on Ferrocene-Linked Poly(Aryl Ether) Dendrons: Reversible Redox Switching and Pb~(2+)-Ion Sensing

机译:基于二茂铁连接的聚(芳醚)树枝的多刺激响应有机金属凝胶:可逆的氧化还原开关和Pb〜(2 +)-离子感测。

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摘要

We describe the design, synthesis, and "stimuli-responsive" study of ferrocene-linked Fréchet-type [poly(aryl ether)]-dendron-based organometallic gels, in which the ferrocene moiety is attached to the dendron framework through an acyl hydrazone linkage. The low-molecularweight gelators (LMWGs) form robust gels in both polar and non-polar solvent/solvent mixtures. The organometallic gels undergo stimuli-responsive behavior through 1) thermal, 2) chemical, and 3) electrochemical methods. Among them, conditions 1 and 3 lead to seamlessly reversible with repeated cycles of identical efficiency. Results indicate that the flexible nature of the poly(aryl ether) dendron framework plays a key role in retaining the reversible electrochemical behavior of ferrocene moiety in the LMWGs. Further, the organometallic gelators have exhibited unique selectivity towards Pb~(2+) ions (detection limit ≈10~(-8)m). The metal ion-sensing results in a gel-sol phase transition associated with a color change visible to the naked eye. Most importantly, decomplexing the metal ion from the system leads to the regeneration of the initial gel morphology, indicating the restoring ability of the organometallic gel. The metal-ligand binding nature has been analyzed by using ~1H NMR spectroscopy, mass spectrometry, and DFT calculations.
机译:我们描述了二茂铁连接的Fréchet型[聚(芳醚)]-Dendron基有机金属凝胶的设计,合成和“刺激响应”研究,其中二茂铁部分通过酰基连接到树枝状骨架上连锁。低分子量胶凝剂(LMWG)在极性和非极性溶剂/溶剂混合物中均形成坚固的凝胶。有机金属凝胶通过1)热学,2)化学和3)电化学方法经历刺激响应行为。其中,条件1和条件3导致无缝可逆,并具有相同效率的重复循环。结果表明,聚(芳基醚)树突骨架的柔性性质在保持LMWG中二茂铁部分的可逆电化学行为中起着关键作用。此外,有机金属胶凝剂对Pb〜(2+)离子具有独特的选择性(检测极限≈10〜(-8)m)。金属离子感测导致凝胶-溶胶相变,与肉眼可见的颜色变化相关。最重要的是,从系统中解离金属离子会导致初始凝胶形态的再生,表明有机金属凝胶的恢复能力。通过使用〜1H NMR光谱,质谱和DFT计算来分析金属-配体的结合性质。

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