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Dielectric materials for electrolyte gated transistor applications

机译:电解质门控晶体管应用的介电材料

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In this review, we summarize the recent progress in developing dielectric materials for electrolyte gated transistors (EGTs). Semiconductors for EGTs have been extensively studied and reviewed since they dominate the key transport properties of these types of transistors. However, the electrolyte dielectric component of these devices is equally important since it provides ionic displacement dominating the device capacitance, driving voltage, and switching times, and determines how to integrate EGTs in/with other device components. Thus, the development of electrolyte dielectrics not only improves the EGT performance but also enables new features and opens up new possibilities for EGTs. Liquid electrolytes are more suitable for integration at the bio-interface and in sensing applications, while solid electrolytes can be printable and are compatible with circuit monolithic integration. Moreover, understanding the mechanism of electrolyte dielectric gating has also accelerated the expansion of emerging electrolyte-based electric double layer transistors (EDLTs) and electrochemical transistors (ECTs). In this review, we first discuss the structure and operation of EDLTs and ECTs, for the latter particularly those based on organic semiconductors (OECTs), since they are the major users of these materials. Next, different types of electrolyte dielectric materials are discussed, driven by relevant applications. We complete this paper with a summary and an outlook of this field.
机译:本文综述了近年来电解液门控晶体管(EGT)介质材料的研究进展。由于EGT半导体在这类晶体管的关键传输特性中占主导地位,因此对其进行了广泛的研究和评述。然而,这些器件的电解液电介质组件同样重要,因为它提供了主导器件电容、驱动电压和开关时间的离子位移,并决定了如何将EGT集成到其他器件组件中。因此,电解液电介质的发展不仅提高了EGT的性能,而且为EGT提供了新的功能,并为EGT开辟了新的可能性。液体电解质更适合集成在生物界面和传感应用中,而固体电解质可以打印,并与电路单片集成兼容。此外,对电解液介质选通机制的理解也加速了新兴电解液基双电层晶体管(EDLT)和电化学晶体管(ECT)的发展。在这篇综述中,我们首先讨论了EDLT和ECT的结构和操作,尤其是基于有机半导体(OECT)的EDLT和ECT,因为它们是这些材料的主要用户。接下来,在相关应用的驱动下,讨论了不同类型的电解质介电材料。本文对这一领域进行了总结和展望。

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