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首页> 外文期刊>Scientific reports. >Flexible Lamination-Fabricated Ultra-High Frequency Diodes Based on Self-Supporting Semiconducting Composite Film of Silicon Micro-Particles and Nano-Fibrillated Cellulose
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Flexible Lamination-Fabricated Ultra-High Frequency Diodes Based on Self-Supporting Semiconducting Composite Film of Silicon Micro-Particles and Nano-Fibrillated Cellulose

机译:基于自支撑硅微粒和纳米原纤化纤维素的自支撑半导体复合薄膜的柔性层压制造的超高频二极管

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摘要

Low cost and flexible devices such as wearable electronics, e-labels and distributed sensors will make the future "internet of things" viable. To power and communicate with such systems, high frequency rectifiers are crucial components. We present a simple method to manufacture flexible diodes, operating at GHz frequencies, based on self-adhesive composite films of silicon micro-particles (Si-μPs) and glycerol dispersed in nanofibrillated cellulose (NFC). NFC, Si-μPs and glycerol are mixed in a water suspension, forming a self-supporting nanocellulose-silicon composite film after drying. This film is cut and laminated between a flexible pre-patterned Al bottom electrode and a conductive Ni-coated carbon tape top contact. A Schottky junction is established between the Al electrode and the Si-μPs. The resulting flexible diodes show current levels on the order of mA for an area of 2?mm(2), a current rectification ratio up to 4?×?10(3) between 1 and 2?V bias and a cut-off frequency of 1.8?GHz. Energy harvesting experiments have been demonstrated using resistors as the load at 900?MHz and 1.8?GHz. The diode stack can be delaminated away from the Al electrode and then later on be transferred and reconfigured to another substrate. This provides us with reconfigurable GHz-operating diode circuits.
机译:低成本和柔性设备,如可穿戴电子设备,电子标签和分布式传感器将使未来的“东西互联网”可行。为了与这种系统进行电力和通信,高频整流器是关键组件。我们提出了一种制造柔性二极管的简单方法,基于硅微粒(Si-μps)的自粘复合薄膜和分散在纳米纤维纤维素(NFC)中的甘油的自粘复合膜。将NFC,Si-μps和甘油在水悬浮液中混合,在干燥后形成自支撑纳米纤维素 - 硅复合膜。将该薄膜切割并在柔性预图形的Al底部电极和导电Ni涂覆的碳胶带顶部接触之间层叠。在Al电极和Si-μps之间建立肖特基结。所得到的柔性二极管显示为2Ωmm(2)的面积为MA的电流水平,电流整流比率高达4?×10(3)在1到2Ω·v偏差和截止频率之间1.8?GHz。使用电阻器作为900ΩMHz和1.8的负载的负载证明了能量收集实验。二极管堆叠可以从Al电极分开,然后稍后转移并重新配置到另一个基板。这为我们提供了可重新配置的GHz操作二极管电路。

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