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Rapid Cellulose-Mediated Microwave Sintering for High-Conductivity Ag Patterns on Paper

机译:快速纤维素介导的微波烧结,用于纸上的高导电性银图案

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摘要

Cellulose-based paper is essential in everyday life, but it also has further potentials for use in low-cost, printable, disposable, and eco-friendly electronics. Here, a method is developed for the cellulose-mediated microwave sintering of Ag patterns on conventional paper, in which the paper plays a significant role both as a flexible insulating substrate for the conductive Ag pattern and as a lossy dielectric media for rapid microwave heating. The anisotropic dielectric properties of the cellulose fibers mean that a microwave electric field applied parallel to the paper substrate provides sufficient heating to produce Ag patterns with a conductivity 29-38% that of bulk Ag in a short period of time (similar to 1 s) at 250-300 degrees C. Significantly, there is little thermal degradation of the substrate during this process. The microwave-sintered Ag patterns exhibit good mechanical stability against 10 000 bending cycles and can be easily soldered with lead-free solder. Therefore, cellulose-mediated microwave sintering presents a promising means of achieving short processing times and high electrical performance in flexible paper electronics.
机译:纤维素纸在日常生活中必不可少,但在低成本,可打印,一次性和环保电子产品中也有进一步的应用潜力。在此,开发了一种用于纤维素介导的微波图案在常规纸上的微波烧结的方法,其中,纸作为导电性Ag图案的柔性绝缘基板以及快速微波加热的有损介电介质均起着重要作用。纤维素纤维的各向异性介电性能意味着,平行于纸基材施加的微波电场可提供足够的加热,从而在短时间内(约1 s)产生导电率达整体Ag的29-38%的Ag图案。在250-300摄氏度的温度下。重要的是,在此过程中基材几乎没有热降解。微波烧结的Ag图案在1万次弯曲循环中表现出良好的机械稳定性,并且可以很容易地用无铅焊料进行焊接。因此,纤维素介导的微波烧结提供了一种有希望的方法,可以在柔性纸电子产品中实现较短的处理时间和较高的电性能。

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