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Noncontact conductivity and dielectric measurement for high throughput roll-to-roll nanomanufacturing

机译:非接触式电导率和介电测量,用于高通量卷对卷纳米制造

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摘要

Advances in roll-to-roll processing of graphene and carbon nanotubes have at last led to the continuous production of high-quality coatings and filaments, ushering in a wave of applications for flexible and wearable electronics, woven fabrics, and wires. These applications often require specific electrical properties, and hence precise control over material micro- and nanostructure. While such control can be achieved, in principle, by closed-loop processing methods, there are relatively few noncontact and nondestructive options for quantifying the electrical properties of materials on a moving web at the speed required in modern nanomanufacturing. Here, we demonstrate a noncontact microwave method for measuring the dielectric constant and conductivity (or geometry for samples of known dielectric properties) of materials in a millisecond. Such measurement times are compatible with current and future industrial needs, enabling real-time materials characterization and in-line control of processing variables without disrupting production.
机译:石墨烯和碳纳米管的卷对卷处理技术的进步最终导致了高品质涂料和长丝的连续生产,迎来了柔性和可穿戴电子产品,机织织物和电线的一波应用热潮。这些应用通常需要特定的电性能,因此需要精确控制材料的微观和纳米结构。尽管原则上可以通过闭环处理方法来实现这种控制,但是相对较少的非接触式和非破坏性选择可以以现代纳米制造所需的速度来量化移动的网上材料的电学性能。在这里,我们演示了一种非接触微波方法,用于在毫秒内测量材料的介电常数和电导率(或几何形状,用于已知介电特性的样品)。这样的测量时间与当前和未来的工业需求兼容,从而可以在不中断生产的情况下实现实时材料表征和工艺变量的在线控制。

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