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Ultra-Thin Graphene Foam Based Flexible Piezoresistive Pressure Sensors for Robotics

Connor Iain Douglas, Marco Caffio, Des Gibson

发表年份
2022
引用次数
4

摘要

– Over recent year, robotics has made a drastic impact in a variety of different markets. Although having many advantages from, safer workspace to speed and efficiency there are several drawbacks all ranging from their lack of ability to execute functions and tasks easily performed by humans. This is mainly due to their lack of ability to implement touch and haptic feedback. In this work, we show the use and applicability of ultra-thin graphene foam (GRF), with polydimethylsiloxane (PDMS) embedded into and over the structure, as an active layer in piezoresistive based pressure sensors for use in robotic touch sensing applications. It has been demonstrated in this work that thin GRF/PDMS-GRF consisting of a few layers of graphene is able to present sensitivity to pressures within the range of 0 to >100kPa. Although pressure sensitivities are not yet comparable to those of current work, it must be noted that the GRF used in this work is much thinner in comparison, consisting of only several layers of graphene.

关键词

GraphenePiezoresistive effectPolydimethylsiloxaneMaterials scienceNanotechnologyRoboticsWork (physics)Pressure sensorTactile sensorRanging

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