Khan Amir, Kisannagar Ravinder Reddy, Mahmood Sadiq, Chuang Wei-Tsung, Katiyar Monica, Gupta Dipti, Lin Hong-Cheu
Department of Materials Science and Engineering, National Yang Ming Chiao Tung University, Hsinchu 300, Taiwan.
Department of Metallurgical Engineering and Materials Science, Indian Institute of Technology Bombay, Powai, Mumbai, Maharashtra 400076, India.
ACS Appl Mater Interfaces. 2023 Sep 13;15(36):42954-42964. doi: 10.1021/acsami.3c08111. Epub 2023 Aug 29.
Intrinsically stretchable conductive self-healable organogels containing poly(lipoic acid), Al ion, tannic acid, and reduced graphene oxide are produced in this report. These noncovalent networks interlocked through physical (hydrogen and coordination) bonds offered high stretchabilities and mechanical strengths as well as fast self-healing behaviors. The optimum organogel-based sensor showed outstanding pressure sensitivities (0.94 kPa up to 10 and 1.07 kPa for 10-50 kPa) and high strain responses (corresponding gauge factors of 1.1 and 0.4 for 0-50 and 50-100% stretching ratios). This organogel also revealed high stabilities at ambient atmosphere due to the presence of binary solvents of dimethyl sulfoxide and glycerol. Additionally, this stretchable thermistor displayed remarkable two-stage sensitivities of -2.6 and -0.4%/°C ranging over 0-30 and 30-80 °C, respectively. Besides, the signal variations of water droplet addition and removal with different temperatures were recorded by the organogel sensor to elucidate the practical applicabilities as a temperature sensor. Moreover, the organogel was utilized to demonstrate humidity sensing, where individual sensitivities of 0.89 and 0.55 were obtained in the respective relative humidity ranges of 10-30 and 40-90%. In the meanwhile, the sensor device illustrated distinct humidity signals during respiration monitoring of nose and mouth breathing detection. Accordingly, these quad-functional sensor applications in strain, pressure, temperature, and humidity detection enable this gel to act as a promising material for future multifunctional flexible electronics.
本报告制备了包含聚(硫辛酸)、铝离子、单宁酸和还原氧化石墨烯的本征可拉伸导电自愈合有机凝胶。这些通过物理(氢键和配位键)相互锁定的非共价网络具有高拉伸性、机械强度以及快速自愈合行为。基于有机凝胶的最佳传感器表现出出色的压力灵敏度(0至10kPa时为0.94kPa,10至50kPa时为1.07kPa)和高应变响应(拉伸比为0至50%和50至100%时对应的应变系数分别为1.1和0.4)。由于存在二甲亚砜和甘油的二元溶剂,这种有机凝胶在环境大气中也表现出高稳定性。此外,这种可拉伸热敏电阻在0至30°C和30至80°C范围内分别显示出显著的两阶段灵敏度,为-2.6%/°C和-0.4%/°C。此外,有机凝胶传感器记录了不同温度下添加和去除水滴时的信号变化,以阐明其作为温度传感器的实际应用。此外,该有机凝胶还用于湿度传感,在10至30%和40至90%的相对湿度范围内分别获得了0.89和0.55的灵敏度。同时,该传感器装置在口鼻呼吸检测的呼吸监测过程中显示出明显的湿度信号。因此,这些在应变、压力、温度和湿度检测中的四功能传感器应用使这种凝胶成为未来多功能柔性电子学的有前途的材料。