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Fully inkjet-printed two-dimensional material field-effect heterojunctions for wearable and textile electronics

机译:可穿戴和纺织电子产品的全喷墨打印二维材料场效应异质结

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摘要

Fully printed wearable electronics based on two-dimensional (2D) material?heterojunction structures also known as heterostructures, such as field-effect transistors, require robust and reproducible printed multi-layer stacks consisting of active channel, dielectric and conductive contact layers. Solution processing of graphite and other layered materials provides low-cost inks enabling printed electronic devices, for example by inkjet printing. However, the limited quality of the 2D-material inks, the complexity of the layered arrangement, and the lack of a dielectric 2D-material ink able to operate at room temperature, under strain and after several washing cycles has impeded the fabrication of electronic devices on textile with fully printed 2D heterostructures. Here we demonstrate fully inkjet-printed 2D-material active heterostructures with graphene and hexagonal-boron nitride (h-BN) inks, and use them to fabricate all inkjet-printed flexible and washable field-effect transistors on textile, reaching a field-effect mobility of ~91?cm2?V?1?s?1, at low voltage (5?V). This enables fully inkjet-printed electronic circuits, such as reprogrammable volatile memory cells, complementary inverters and OR logic gates.
机译:基于二维(2D)材料-异质结结构(也称为异质结构)的完全印刷可穿戴电子设备,如场效应晶体管,需要坚固且可复制的印刷多层堆叠,包括有源通道,介电层和导电接触层。石墨和其他层状材料的固溶处理提供了低成本墨水,可用于印刷电子设备,例如通过喷墨印刷。但是,二维材料墨水的质量有限,分层结构的复杂性以及缺少能够在室温,应变和几次洗涤循环后运行的介电二维材料墨水,这阻碍了电子设备的制造。具有完全印刷的2D异质结构的纺织品上。在这里,我们演示了使用石墨烯和六方氮化硼(h-BN)墨水进行完全喷墨打印的2D材料有源异质结构,并使用它们在纺织品上制造了所有喷墨打印的柔性和可清洗场效应晶体管,从而达到了场效应在低电压(<5V)下的迁移率约为91Ω·cm2·V·V·1·s·1。这可以实现完全喷墨打印的电子电路,例如可重新编程的易失性存储单元,互补反相器和“或”逻辑门。

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