Calligraphic pencil-on-paper strain sensors

Wagesh Kamal Bajre, Vinit Srivastava, Gopesh K. Bajre, Zainab Mufarreh Elqahtani, M. S. Al-Buriahi, Rahul Vaish, Bharat Singh Rajpurohit
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Abstract

Paper-based electronic devices, known as “papertronics”, have gained attention recently for their ease of fabrication, economic viability, biodegradability, and versatility in flexible electronics. However, sophisticated graphite deposition methods limit their development. This study presents a simple, fast, and inexpensive fabrication method for a tunable, hand-drawn papertronic strain sensor. A real-time resistance monitoring system was developed for the pencil-on-paper (PoP) strain sensor fabrication. The sensor's resistance was also controlled through sodium chloride (NaCl) impregnation and its performance was evaluated by variations in paper substrate and graphite source through different commercially available pencils. Results showed that NaCl-treated sensors had relative resistance change values of 120–160% compared to untreated samples with 20–40% relative resistance change values.
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书法笔在纸上的应变传感器
纸基电子设备,被称为“papertronics”,最近因其易于制造、经济可行性、可生物降解性和柔性电子产品的多功能性而受到关注。然而,复杂的石墨沉积方法限制了它们的发展。本研究提出了一种简单、快速、廉价的可调手绘纸电子应变传感器制造方法。为制作纸笔应变传感器,研制了一种实时电阻监测系统。通过氯化钠浸渍来控制传感器的电阻,并通过不同的市售铅笔,通过纸张基材和石墨源的变化来评估传感器的性能。结果表明,nacl处理后的传感器相对电阻变化值为120-160%,而未处理的传感器相对电阻变化值为20-40%。
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