Screen-printed EMI shielding materials on Mulberry paper for wearable electronics with high mechanical strength

Hoseong Song, Sooman Lim
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Abstract

The wearable and flexible printed electronics has shown remarkable advancement due to its low fabrication cost and high performance of devices. The screen printing process for wearable electromagnetic interference shielding (EMI) electronics were profitable among the other printing methods. Herein, we fabricated the silver flakes based EMI shielding device on the mulberry paper using facile screen printing method and investigated their optimization condition with electrical conductivity and EMI shielding effectiveness. The 2 mm squeeze depth shows the lowest sheet resistance of 60 mΩ and the excellently coated silver flaks on mulberry paper were confirmed by SEM. In addition, the mechanical properties of the fabricated EMI shielding device was improved due to longer fiber length than other commercial papers. The optimized screen printing process shows best printing method for wearable EMI shielding.
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高机械强度可穿戴电子产品用桑皮纸丝网印刷电磁干扰屏蔽材料
可穿戴柔性印刷电子器件因其制造成本低、器件性能高等特点而取得了显著的进步。在其他印刷方法中,用于可穿戴电磁干扰屏蔽(EMI)电子产品的丝网印刷工艺是有利可图的。本文采用丝网印刷的方法在桑皮纸上制备了银片基电磁干扰屏蔽器件,并考察了其电导率和电磁干扰屏蔽效果的优化条件。2 mm的挤压深度显示出最低的片阻60 mΩ,扫描电镜证实了桑纸上的银片涂布效果很好。此外,由于纤维长度比其他商业纸长,因此制备的电磁干扰屏蔽装置的机械性能得到了改善。优化后的丝网印刷工艺显示出可穿戴式电磁干扰屏蔽的最佳印刷方法。
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