A DIY Fabrication Approach of Stretchable Sensors Using Carbon Nano Tube Powder for Wearable Device

Author:

Wiranata Ardi,Ohsugi Yunosuke,Minaminosono Ayato,Mao Zebing,Kurata Haruyuki,Hosoya Naoki,Maeda Shingo

Abstract

Soft robotics and wearable devices are promising technologies due to their flexibility. As human-soft robot interaction technologies advance, the interest in stretchable sensor devices has increased. Currently, the main challenge in developing stretchable sensors is preparing high-quality sensors via a simple and cost-effective method. This study introduces the do-it-yourself (DIY)-approach to fabricate a carbon nanotube (CNT) powder-based stretchable sensor. The fabrication strategy utilizes an automatic brushing machine to pattern CNT powder on the elastomer. The elastomer ingredients are optimized to increase the elastomer compatibility with the brushing method. We found that polydimethylsiloxane-polyethyleneimine (PDMS-PEIE) is 50% more stretchable and 63% stickier than previously reported PDMS 30-1. With these improved elastomer characteristics, PDMS-PEIE/multiwalled CNT (PDMS-PEIE/MWCNT-1) strain sensor can realize a gauge factor of 6.2–8.2 and a responsivity up to 25 ms. To enhance the compatibility of the powder-based stretchable sensor for a wearable device, the sensor is laminated using a thin Ecoflex membrane. Additionally, system integration of the stretchable sensors are demonstrated by embedding it into a cotton-glove and a microcontroller to control a virtual hand. This cost-effective DIY-approach are expected to greatly contribute to the development of wearable devices since the technology is simple, economical, and reliable.

Funder

Japan Society for the Promotion of Science

Hoso Bunka Foundation

Urakami Foundation for Food and Food Culture Promotion

Publisher

Frontiers Media SA

Subject

Artificial Intelligence,Computer Science Applications

Reference67 articles.

1. Ultra-stretchable and Skin-Mountable Strain Sensors Using Carbon Nanotubes-Ecoflex Nanocomposites;Amjadi;Nanotechnology,2015

2. Robot Assisted Gait Training with Active Leg Exoskeleton (ALEX);Banala,2008

3. Review: Semiconductor Piezoresistance for Microsystems;Barlian;Proc. IEEE,2009

4. Flexible Active Skin: Large Reconfigurable Arrays of Individually Addressed Shape Memory Polymer Actuators;Besse;Adv. Mater. Technol.,2017

5. Stretchable Pumps for Soft Machines;Cacucciolo;Nature,2019

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