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Interaction-Driven Giant Electrostatic Modulation of Ion Permeation in Atomically Small Capillaries

Interaction-Driven Giant Electrostatic Modulation of Ion Permeation in Atomically Small Capillaries

来源:Arxiv_logoArxiv
英文摘要

Manipulating the electrostatic double layer and tuning the conductance in nanofluidic systems at salt concentrations of 100 mM or higher has been a persistent challenge. The primary reasons are (i) the short electrostatic proximity length, ~3-10 Å, and (ii) difficulties in fabricating atomically small capillaries. Here, we successfully fabricate in-plane vermiculite laminates with transport heights of ~3-5 Å, which exhibit a cation selectivity close to 1 even at a 1000 mM concentration, suggesting an overlapping electrostatic double layer. For gate voltages from -2 V to +1 V, the K+-intercalated vermiculite shows a remarkable conductivity modulation exceeding 1400% at a 1000 mM KCl concentration. The gated ON/OFF ratio is mostly unaffected by the ion concentration (10-1000 mM), which confirms that the electrostatic double layer overlaps with the collective ion movement within the channel with reduced activation energy. In contrast, vermiculite laminates intercalated with Ca2+ and Al3+ ions display reduced conductance with increasing negative gate voltage, highlighting the importance of ion-specific gating effects under Å-scale confinement. Our findings contribute to a deeper understanding of electrostatic phenomena occurring in highly confined fluidic channels, opening the way to the exploration of the vast library of two-dimensional materials.

Dhal Biswabhusan、Yechan Noh、Sanat Nalini Paltasingh、Chandrakar Naman、Siva Sankar Nemala、Rathi Aparna、Kaushik Suvigya、Andrea Capasso、Saroj Kumar Nayak、Li-Hsien Yeh、Kalon Gopinadhan

物理学

Dhal Biswabhusan,Yechan Noh,Sanat Nalini Paltasingh,Chandrakar Naman,Siva Sankar Nemala,Rathi Aparna,Kaushik Suvigya,Andrea Capasso,Saroj Kumar Nayak,Li-Hsien Yeh,Kalon Gopinadhan.Interaction-Driven Giant Electrostatic Modulation of Ion Permeation in Atomically Small Capillaries[EB/OL].(2025-07-01)[2025-07-17].https://arxiv.org/abs/2507.00536.点此复制

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