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Electrical Field Regulation of Ion Transport in Polyethylene Terephthalate Nanochannels

机译:聚对苯二甲酸乙二醇酯离子输送的电场调节

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Rectified ion transport in nanochannels is the basis of ion channels in biological cells and has inspired emerging nanochannel applications in ion separation, Coulter counters, and biomolecule detection and nanochannel energy harvesters. In this work we fabricated a polyethylene terephthalate (PET) conical nanochannel using latent ion track etching technique and then systematically studied the ion transport and influence of cation species on the nanochannel surface with cyclic I-V measurement. We discovered the electrical regulation of the reversible and irreversible modification of the nanochannel transportation by bivalent and trivalent cations, revealing the existence of the switching threshold voltage which can control the current rectification in bivalent solution. The proposed mechanism of the transport state transition in the PET nanochannel mimics behaviors of voltage-gated biological ion channels. These findings provide new insight into the understanding of the ion channel signaling and translocation control of charged particles in nanochannel applications.
机译:纳米通道中的整流离子传输是生物细胞中离子通道的基础,并在离子分离,肉瘤计数器和生物分子检测和纳米通道能量收割机中启发了新出现的纳米通道应用。在这项工作中,我们使用潜伏离子轨道蚀刻技术制造了聚对苯二甲酸乙二醇酯(PET)圆锥形纳米烷基,然后系统地研究了循环I-V测量的纳米通道表面上的离子输送和阳离子种的影响。我们发现了二价和三价阳离子对纳米通道运输的可逆和不可逆转地改变的电气调节,揭示了可以控制二价溶液中的电流整流的开关阈值电压的存在。电压门控生物离子通道宠物纳米通道模拟行为中的运输状态转变的提出机制。这些发现提供了对纳米通道应用中带电粒子的离子通道信号和转移控制的理解提供了新的洞察。

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