Birck Nanotechnology Center, Purdue University , West Lafayette, Indiana 47907, United States.
School of Electrical and Computer Engineering, Purdue University , West Lafayette, Indiana 47907, United States.
ACS Appl Mater Interfaces. 2016 Jul 6;8(26):16907-13. doi: 10.1021/acsami.6b02952. Epub 2016 Jun 22.
In this Research Article, we demonstrate a facile method for the fabrication of porous-carbon/silver nanocomposites using direct laser writing on polymeric substrates. Our technique uses a combination of CO2 laser-induced carbonization and selective silver deposition on a polyimide sheet to create flexible highly conductive traces. The localized laser irradiation selectively converts the polyimide to a highly porous and conductive carbonized film with superhydrophilic wettability. The resulting pattern allows for selective trapping of aqueous silver ionic ink solutions into the carbonized regions, which are converted to silver nanoparticle fillers upon an annealing step. Elemental and surface morphology analysis via XRD and SEM reveals a uniform coating of Ag nanoparticles on the porous carbon. The Ag/C composite lowers the sheet resistance of the original laser carbonized polyimide from 50 to 0.02 Ω/□. The resulting patterns are flexible and electromechanically robust with less than 0.6 Ω variation in resistance after >15000 bending flexion cycles at a radius of curvature of 5 mm. Furthermore, using this technique, we demonstrate the fabrication of a wireless resonant pressure sensor capable of detecting pressures ranging from 0 to 97 kPa with an average sensitivity of -26 kHz/kPa.
在这篇研究文章中,我们展示了一种使用直接激光写入在聚合物基底上制造多孔碳/银纳米复合材料的简便方法。我们的技术结合了 CO2 激光诱导碳化和在聚酰亚胺片上选择性银沉积,以创建灵活的高导电性迹线。局部激光照射选择性地将聚酰亚胺转化为具有超亲水润湿性的高多孔和导电碳化膜。所得图案允许将含水银离子油墨溶液选择性地捕获到碳化区域中,在退火步骤后将其转化为银纳米颗粒填料。通过 XRD 和 SEM 进行的元素和表面形态分析表明,Ag 纳米颗粒在多孔碳上均匀涂覆。Ag/C 复合材料将原始激光碳化聚酰亚胺的方阻从 50 降低至 0.02 Ω/□。所得图案具有柔韧性和机电鲁棒性,在半径为 5mm 的情况下,经过 >15000 次弯曲弯曲循环后,电阻变化小于 0.6 Ω。此外,我们使用该技术展示了一种无线谐振压力传感器的制造,该传感器能够检测 0 至 97kPa 的压力,平均灵敏度为-26kHz/kPa。