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Photo-switchable two-dimensional nanofluidic ionic diodes

机译:可光切换二维纳米流体离子二极管

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The bottom-up assembly of ion-channel-mimetic nanofluidic devices and materials with two-dimensional (2D) nano-building blocks paves a straightforward way towards the real-world applications of the novel transport phenomena on a nano- or sub-nanoscale. One immediate challenge is to provide the 2D nanofluidic systems with adaptive responsibilities and asymmetric ion transport characteristics. Herein, we introduce a facile and general strategy to provide a graphene-oxide-based 2D nanofluidic system with photo-switchable ionic current rectification (ICR). The degree of ICR can be prominently enhanced upon UV irradiation and it can be perfectly retrieved under irradiation with visible light. A maximum ICR ratio of about 48 was achieved. The smart and functional nanofluidic devices have applications in energy conversion, chemical sensing, water treatment, etc.
机译:离子通道模拟纳米流体装置和具有二维(2D)纳米建筑块的材料的自下而上的组装朝着纳米或亚纳米级载体上的新型运输现象的真实应用铺平了直接的方式。一个立即挑战是提供具有适应性职责和不对称离子传输特性的2D纳米流体系统。在此,我们介绍一种容易和一般的策略,以提供具有光可切换离子电流整流(ICR)的石墨烯氧化物的2D纳米流体系统。在紫外线照射时,ICR的程度可以突出增强,并且可以在具有可见光的照射下完美地检索。最大ICR比率为约48。智能和功能性纳米流体装置具有能量转换,化学传感,水处理,等的应用。

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