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Ultra-compact, passive, wireless sensor using quantum capacitance effect in graphene

机译:超紧凑,无源,无线传感器,在石墨烯中使用量子电容效应

摘要

An electrical device includes at least one graphene quantum capacitance varactor. In some examples, the graphene quantum capacitance varactor includes an insulator layer, a graphene layer disposed on the insulator layer, a dielectric layer disposed on the graphene layer, a gate electrode formed on the dielectric layer, and at least one contact electrode disposed on the graphene layer and making electrical contact with the graphene layer. In other examples, the graphene quantum capacitance varactor includes an insulator layer, a gate electrode recessed in the insulator layer, a dielectric layer formed on the gate electrode, a graphene layer formed on the dielectric layer, wherein the graphene layer comprises an exposed surface opposite the dielectric layer, and at least one contact electrode formed on the graphene layer and making electrical contact with the graphene layer.
机译:电气设备包括至少一个石墨烯量子电容变容级。在一些示例中,石墨烯量子电容变容级包括绝缘体层,设置在绝缘体层上的石墨烯层,设置在石墨烯层上的介电层,形成在介电层上的栅电极,以及设置在介电层上的至少一个接触电极。石墨烯层和与石墨烯层电接触。在其他示例中,图石墨烯电容变容变容器包括绝缘体层,在绝缘体层中凹陷的栅电极,形成在栅电极上的介电层,在介电层上形成的石墨烯层,其中,石墨烯层包含露出的表面介电层,以及形成在石墨烯层上的至少一个接触电极,并与石墨烯层电接触。

著录项

  • 公开/公告号US10948447B2

    专利类型

  • 公开/公告日2021-03-16

    原文格式PDF

  • 申请/专利权人 REGENTS OF THE UNIVERSITY OF MINNESOTA;

    申请/专利号US202016905364

  • 发明设计人 STEVEN J. KOESTER;

    申请日2020-06-18

  • 分类号H01L29/93;G01N27/22;H01L29/10;H01L29/16;H01L29/423;H01L31/08;H01L31/115;G01R27/26;

  • 国家 US

  • 入库时间 2022-08-24 17:43:07

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