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Gating of an organic transistor through a bilayer lipid membrane with ion channels

机译:通过带有离子通道的双层脂质膜门控有机晶体管

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The authors use bilayer lipid membranes (BLMs) as a means to control the gating of organic electrochemical transistors (OECTs). Upon formation of a high quality BLM, the gating of an OECT can be fully suppressed. Gating is restored when gramicidin ion channels are incorporated into the BLM. The valence-dependent permeability of gramicidin enables these devices to discriminate between monovalent and divalent ions. This work shows that ion channels can be effectively employed to control the selectivity of organic transistor-based sensors.
机译:作者使用双层脂质膜(BLM)作为控制有机电化学晶体管(OECT)门控的手段。在形成高质量的BLM时,可以完全抑制OECT的门控。当将短杆菌肽离子通道并入BLM中时,门控将恢复。短杆菌肽的价态依赖性渗透性使这些装置能够区分单价离子和二价离子。这项工作表明,离子通道可以有效地用于控制基于有机晶体管的传感器的选择性。

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