School of Public Health, Nantong University, Nantong, Jiangsu 226019, China.
School of Chemistry and Chemical Engineering, Nantong University, Nantong, Jiangsu 226019, China.
Nano Lett. 2022 May 11;22(9):3678-3684. doi: 10.1021/acs.nanolett.2c00312. Epub 2022 Apr 20.
Inspired by electronic transistors, electric field gating has been adopted to manipulate ionic currents of smart nanofluidic devices. Here, we report a PNP nanofluidic bipolar junction transistor (nBJT) consisting of one polyaniline (PANI) layer sandwiched between two polyethylene terephthalate (PET) nanoporous membranes. The PNP nBJT exhibits three different responses of currents (quasi-linear, rectification, and sigmoid) due to the counterbalance between surface charge distribution and base voltage applied in the nanofluidic channels; thus, they can be switched by base voltage. Four operating modes (cutoff, active, saturation, and breakdown mode) occur in the collector response currents. Under optimal conditions, the PNP nBJT exhibits an average current gain of up to 95 in 100 mM KCl solution at a low base voltage of 0.2 V. The present nBJT is promising for fabrication of nanofluidic devices with logical-control functions for analysis of single molecules.
受电子晶体管的启发,电场门控已被用于操纵智能纳流控器件中的离子电流。在这里,我们报告了一种由聚吡咯(PANI)层夹在两个聚对苯二甲酸乙二醇酯(PET)纳米多孔膜之间组成的 PNP 纳流控双极结晶体管(nBJT)。PNP nBJT 由于纳流道中表面电荷分布和基极电压之间的平衡,表现出三种不同的电流响应(准线性、整流和阶跃);因此,它们可以通过基极电压进行切换。在集电极响应电流中会出现四种工作模式(截止、有源、饱和和击穿模式)。在最佳条件下,PNP nBJT 在 100 mM KCl 溶液中,在 0.2 V 的低基极电压下,平均电流增益高达 95。目前的 nBJT 有望用于制造具有逻辑控制功能的纳流控器件,用于分析单个分子。