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Shape-Designable and Reconfigurable All-Paper Sensor through the Sandwich Architecture for Pressure/Proximity Detection

Pengfei Zhao, Ruimin Zhang, Yanhong Tong, Xiaoli Zhao, Tao Zhang, Xue Wang, Qingxin Tang, Yichun Liu

2021ACS Applied Materials & Interfaces28 citationsDOI

Abstract

All-paper sensors that are capable of free cutting and folding maximize the merits of papers, which fully utilize the unique potential of papers in cost effectiveness, flexibility, disposability, biodegradability, and a flexible design. However, most of the paper sensors have applied metals as the electrodes and polyimide/polydimethylsiloxane as the encapsulation/sensitive layers, limiting the advantages of the paper sensor. In this work, an all-paper, shape-designable, and reconfigurable capacitive pressure/proximity sensor is fabricated with multilayered tissue paper as the dielectric and polypyrrole printer paper as the electrode/encapsulation. Without the restriction of heterogeneous materials, the all-paper components enable the sensors’ flexible shape design for freely cuttable and foldable 2D and 3D sensors including a 2D braille keyboard and even allow reconfiguration from a 3D box sensor to a 3D candy sensor. The all-paper sensor presents superior pressure-sensing performance (0.96 kPa–1 at <1.76 kPa and 0.09 kPa–1 at 1.76–22 kPa) and proximity-sensing ability. The sensing mechanism of the sensor is directly revealed from tissue paper changes using in situ 3D microscopy and dielectric measurement experiments. These results provide inspiration for realizing shape-designable and reconfigurable 3D sensors and fully demonstrate the application potential in omnidirectional perception, stretchable sensors, and green electronics.

Topics & Concepts

Materials scienceCapacitive sensingPressure sensorControl reconfigurationPolydimethylsiloxaneElectrodeDielectricTactile sensorPolyimideFlexible electronicsElectronicsNanotechnologyComputer scienceOptoelectronicsEmbedded systemMechanical engineeringElectrical engineeringRobotLayer (electronics)Operating systemArtificial intelligenceEngineeringPhysical chemistryChemistryAdvanced Sensor and Energy Harvesting MaterialsTactile and Sensory InteractionsConducting polymers and applications
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