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Liquid-Solid Dual-Gate Organic Transistors with Tunable Threshold Voltage for Cell Sensing

机译:具有可调谐阈值电压的液体固体双栅有机晶体管,用于细胞感测

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Liquid electrolyte-gated organic field effect transistors and organic electrochemical transistors have recently emerged as powerful technology platforms for sensing and simulation of living, cells and organisms. For such applications, the transistors are operated at a gate voltage around or below 0.3 V because prolonged application of a higher voltage bias can lead to membrane rupturing and cell death. This constraint often prevents the operation of the transistors at their maximum transconductance or most sensitive regime. Here, we exploit a solid-liquid dual-gate organic transistor structure, where the threshold voltage of the liquid-gated conduction channel is controlled by an additional gate that is separated from the channel by a metal-oxide gate dielectric. With this design, the threshold voltage of the "sensing channel" can be linearly tuned in a voltage window exceeding 0.4 V. We have demonstrated that the dual-gate structure enables a much better sensor response to the detachment of human mesenchymal stem cells. In general, the capability of tuning the optimal sensing bias will not only improve the device performance but also broaden the material selection for cell-based organic bioelectronics.
机译:液体电解质门控有机场效应晶体管和有机电化学晶体管最近被出现为用于感测和仿真生活,细胞和生物的强大技术平台。对于这种应用,晶体管以围绕或低于0.3V的栅极电压操作,因为延长施加更高电压偏压可以导致膜破裂和细胞死亡。该约束通常防止晶体管在其最大跨导或最敏感的方案处的操作。这里,我们利用了一个固液双栅有机晶体管结构,其中液门式导通通道的阈值电压由由金属氧化物栅极电介质与通道分离的附加栅极控制。利用这种设计,“感测通道”的阈值电压可以在超过0.4V的电压窗口中线性调谐。我们已经证明双栅极结构能够更好地对人间充质干细胞分离的响应。通常,调整最佳感测偏压的能力不仅可以改善器件性能,而且还扩大了基于细胞的有机生物电体的材料选择。

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