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可持续大分子辅助制备交联、超轻、柔性石墨烯气凝胶传感器,用于从低频应变/压力到高频振动的传感。

Sustainable-Macromolecule-Assisted Preparation of Cross-linked, Ultralight, Flexible Graphene Aerogel Sensors toward Low-Frequency Strain/Pressure to High-Frequency Vibration Sensing.

机构信息

Key Laboratory for Liquid-Solid Structural Evolution and Processing of Materials, School of Materials Science and Engineering, Shandong University, Jinan, Shandong, 250061, China.

School of Materials Science and Engineering, Nanyang Technological University, 50 Nanyang Avenue, Singapore, 639798, Singapore.

出版信息

Small. 2022 Jun;18(24):e2202047. doi: 10.1002/smll.202202047. Epub 2022 May 16.

DOI:10.1002/smll.202202047
PMID:35570715
Abstract

Ultralight and highly flexible aerogel sensors, composed of reduced graphene oxide cross-linked by sustainable-macromolecule-derived carbon, are prepared via facile freeze-drying and thermal annealing. The synergistic combination of cross-linked graphene nanosheets and micrometer-sized honeycomb pores gives rise to the exceptional properties of the aerogels, including superior compressibility and resilience, good mechanical strength and durability, satisfactory fire-resistance, and outstanding electromechanical sensing performances. The corresponding aerogel sensors, operated at an ultralow voltage of 0.2 V, can efficiently respond to a wide range of strains (0.1-80%) and pressures (13-2750 Pa) even at temperatures beyond 300 °C. Moreover, the ultrahigh-pressure sensitivity of 10 kPa and excellent sensing stability and durability are accomplished. Strikingly, the aerogel sensors can also sense the vibration signals with ultrahigh frequencies of up to 4000 Hz for >1 000 000 cycles, significantly outperforming those of other sensors. These enable successful demonstration of the exceptional performance of the cross-linked graphene-based biomimetic aerogels for sensitive monitoring of mechanical signals, e.g., acting as wearable devices for monitoring human motions, and for nondestructive monitoring of cracks on engineering structures, showing the great potential of the aerogel sensors as next-generation electronics.

摘要

超轻、高柔韧的气凝胶传感器由可持续大分子衍生碳交联的还原氧化石墨烯制备而成,通过简便的冷冻干燥和热退火制备。交联的石墨烯纳米片和微米级蜂窝孔的协同组合赋予了气凝胶的特殊性能,包括优异的可压缩性和弹性、良好的机械强度和耐久性、令人满意的防火性能以及出色的机电传感性能。相应的气凝胶传感器在超低电压 0.2 V 下工作,即使在 300°C 以上的温度下,也能高效地响应大范围的应变(0.1-80%)和压力(13-2750 Pa)。此外,还实现了超高的压力灵敏度 10 kPa 以及出色的传感稳定性和耐久性。引人注目的是,气凝胶传感器还可以感应高达 4000 Hz 的超高频率振动信号,超过 1000000 个循环,显著优于其他传感器。这些成功地展示了交联石墨烯基仿生气凝胶在敏感监测机械信号方面的卓越性能,例如作为可穿戴设备用于监测人体运动,以及对工程结构上的裂缝进行无损监测,显示出气凝胶传感器作为下一代电子产品的巨大潜力。

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