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Scaling, stacking, and printing: How 1D and 2D nanomaterials still hold promise for a new era of electronics

机译:缩放,堆叠和印刷:1D和2D纳米材料仍然仍然承担承诺的电子产品的新时代

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1D and 2D nanomaterials continue to show promise for use in electronic devices. Their atomically thin size and superb transport properties make them of great value for transistors scaled in size and, more importantly, in voltage. Meanwhile, their substrate independence and van der Waals nature allows for ready stacking of nanomaterials at the device (interdigitated channels) or chip (monolithic 3D integrated) level. Finally, with dispersion into solution-phase inks, nanomaterials can be printed into thin-film devices for a new era of low-cost, flexible electronics that outperform competing printable materials. Each of these areas - scaling, stacking, and printing - benefit from uniquely from nanomaterials and will be reviewed herein.
机译:1D和2D纳米材料继续显示在电子设备中使用的承诺。它们的原子薄尺寸和一流的传输特性使它们具有很大的晶体管尺寸的晶体管,更重要的是在电压中。同时,它们的基板独立性和范德瓦尔斯性质允许在装置(交叉指南通道)或芯片(整体三维集成)水平上的纳米材料堆叠。最后,通过分散到溶液相油墨中,可以将纳米材料印刷成薄膜器件,以进行新的低成本,柔性电子产品的新时代,这些电子设备优于竞争可打印材料。这些区域中的每一个 - 缩放,堆叠和印刷 - 从纳米材料唯一受益,并将在此进行审查。

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