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基于车床的气溶胶喷射印刷技术在柔性基板上的共形印刷电子器件及可充气导管

Conformal printed electronics on flexible substrates and inflatable catheters using lathe-based aerosol jet printing.

作者信息

Hobbie Hansel Alex, Doherty James L, Smith Brittany N, Maccarini Paolo, Franklin Aaron D

机构信息

Department of Electrical and Computer Engineering, Duke University, Durham, NC USA.

Department of Anesthesiology, Duke University, Durham, NC USA.

出版信息

Npj Flex Electron. 2024;8(1):54. doi: 10.1038/s41528-024-00340-0. Epub 2024 Aug 30.

Abstract

With the growth of additive manufacturing (AM), there has been increasing demand for fabricating conformal electronics that directly integrate with larger components to enable unique functionality. However, fabrication of conformal electronics is challenging because devices must merge with host substrates regardless of curvilinearity, topography, or substrate material. In this work, we employ aerosol jet (AJ) printing, an AM method for jet printing electronics using ink-based materials, and a custom-made lathe mechanism for mounting flexible substrates and 3D objects on a rotating axis. Using this method of lathe-based AJ printing, conformal electronics are printed around the circumference of rotational bodies with 3D curvilinear surfaces through cylindrical-coordinate motion. We characterize the diverse capabilities of lathe AJ (LAJ) printing and demonstrate flexible conformal electronics including multilayer carbon nanotube transistors. Lastly, a graphene sensor is conformally printed on an inflated catheter balloon for temperature and inflation monitoring, thus highlighting the versatilities of LAJ printing.

摘要

随着增材制造(AM)的发展,对制造与更大部件直接集成以实现独特功能的共形电子器件的需求日益增加。然而,共形电子器件的制造具有挑战性,因为器件必须与主体基板融合,而不管其曲线度、形貌或基板材料如何。在这项工作中,我们采用气溶胶喷射(AJ)打印,这是一种使用基于墨水的材料进行电子器件喷射打印的增材制造方法,以及一种定制的车床机构,用于将柔性基板和三维物体安装在旋转轴上。使用这种基于车床的AJ打印方法,通过圆柱坐标运动在具有三维曲面的旋转体圆周周围打印共形电子器件。我们表征了车床AJ(LAJ)打印的多种能力,并展示了包括多层碳纳米管晶体管在内的柔性共形电子器件。最后,将一个石墨烯传感器共形打印在一个充气的导管球囊上,用于温度和充气监测,从而突出了LAJ打印的多功能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0e3f/11364510/8549572e6b9d/41528_2024_340_Fig1_HTML.jpg

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