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纳米通道中离子传输的超分子门控。

Supramolecular gating of ion transport in nanochannels.

机构信息

Nanomaterials and Catalysis Lab, Chemistry and Physics of Materials Unit, Jawaharlal Nehru Centre for Advanced Scientific Research (JNCASR), Jakkur P.O., Bangalore 560064 (India) http://www.jncasr.ac.in/eswar/

出版信息

Angew Chem Int Ed Engl. 2014 Nov 24;53(48):13073-7. doi: 10.1002/anie.201406448. Epub 2014 Sep 26.

Abstract

Several covalent strategies towards surface charge-reversal in nanochannels have been reported with the purpose of manipulating ion transport. However, covalent routes lack dynamism, modularity and post-synthetic flexibility, and hence restrict their applicability in different environments. Here, we introduce a facile non-covalent approach towards charge-reversal in nanochannels (<10 nm) using strong charge-transfer interactions between dicationic viologen (acceptor) and trianionic pyranine (donor). The polarity of ion transport was switched from anion selective to ambipolar to cation selective by controlling the extent of viologen bound to the pyranine. We could also regulate the ion transport with respect to pH by selecting a donor with pH-responsive functional groups. The modularity of this approach further allows facile integration of various functional groups capable of responding to stimuli such as light and temperature to modulate the transport of ions as well as molecules.

摘要

已经有几种将表面电荷反转的共价策略被报道用于操纵离子传输。然而,共价途径缺乏动态性、模块性和合成后灵活性,因此限制了它们在不同环境中的适用性。在这里,我们介绍了一种使用二价阳离子 viologen(受体)和三价阴离子 pyranine(供体)之间强电荷转移相互作用在纳米通道(<10nm)中进行电荷反转的简单非共价方法。通过控制与 pyranine 结合的 viologen 的程度,可以将离子传输的极性从阴离子选择性切换到两性离子选择性再到阳离子选择性。我们还可以通过选择具有 pH 响应官能团的供体来调节离子传输与 pH 的关系。这种方法的模块性还允许轻松集成各种能够响应光和温度等刺激的功能基团,以调节离子以及分子的传输。

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