Department of Electronics Engineering, Hanyang University, Seoul 133-791, South Korea.
Nanoscale. 2016 Apr 28;8(17):9185-92. doi: 10.1039/c6nr00774k.
For sensors that emulate human tactile perception, we suggest a simple method for fabricating a highly sensitive force sensor using a conductive polyurethane sponge where graphene flakes are self-assembled into the porous structure of the sponge. The complete sensor device shows a sensitive and reliable detection response for a broad range of pressure and dynamic pressure that correspond to human tactile perception. Sensitivity of the sensor to detect vibration is also confirmed with vertical actuations due to slipping over micro-scale ridge structures attached on the sensors. Based on the sensor's ability to detect both pressure and vibration, the sensor can be utilized as a flexible tactile sensor.
对于模拟人类触觉感知的传感器,我们建议使用一种简单的方法来制造一种高度灵敏的力传感器,该传感器使用导电聚氨酯海绵,其中石墨烯薄片自组装到海绵的多孔结构中。完整的传感器设备对与人类触觉感知相对应的广泛压力和动态压力显示出灵敏和可靠的检测响应。传感器对由于附着在传感器上的微尺度脊结构上的滑动而引起的振动的检测灵敏度也得到了确认。基于传感器检测压力和振动的能力,该传感器可用作柔性触觉传感器。