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喷墨打印可拉伸电路在可穿戴传感器应用中的实验特性研究。

Experimental Characterization of Inkjet-Printed Stretchable Circuits for Wearable Sensor Applications.

机构信息

Department of Mechatronics Engineering/NanoLab, School of Applied Technical Sciences, German Jordanian University, Amman 11180, Jordan.

Department of Electronics & Communications Engineering, Arab Academy for Science, Technology and Maritime Transport, Cairo 11799, Egypt.

出版信息

Sensors (Basel). 2018 Oct 16;18(10):3476. doi: 10.3390/s18103476.

Abstract

This paper introduces a cost-effective method for the fabrication of stretchable circuits on polydimethylsiloxane (PDMS) using inkjet printing of silver nanoparticle ink. The fabrication method, presented here, allows for the development of fully stretchable and wearable sensors. Inkjet-printed sinusoidal and horseshoe patterns are experimentally characterized in terms of the effect of their geometry on stretchability, while maintaining adequate electrical conductivity. The optimal fabricated circuit, with a horseshoe pattern at an angle of 45°, is capable of undergoing an axial stretch up to a strain of 25% with a resistance under 800 Ω. The conductivity of the circuit is fully reversible once it is returned to its pre-stretching state. The circuit could also undergo up to 3000 stretching cycles without exhibiting a significant change in its conductivity. In addition, the successful development of a novel inkjet-printed fully stretchable and wearable version of the conventional pulse oximeter is demonstrated. Finally, the resulting sensor is evaluated in comparison to its commercially available counterpart.

摘要

本文介绍了一种在聚二甲基硅氧烷(PDMS)上通过喷墨打印银纳米粒子墨水来制作可拉伸电路的具有成本效益的方法。这里提出的制作方法允许开发完全可拉伸和可穿戴的传感器。实验表征了喷墨打印的正弦和马蹄形图案,以研究其几何形状对可拉伸性的影响,同时保持足够的导电性。最佳制作的电路采用 45°角的马蹄形图案,能够承受高达 25%应变的轴向拉伸,电阻低于 800 Ω。一旦回到预拉伸状态,电路的导电性即可完全恢复。该电路还可以经受多达 3000 次的拉伸循环,而其导电性没有明显变化。此外,成功开发了一种新型喷墨打印的全可拉伸和可穿戴的传统脉搏血氧计版本。最后,将所得传感器与市售同类产品进行了比较评估。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ae09/6210026/c14ed5d28aad/sensors-18-03476-g0A1.jpg

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