He Shan, Zhang Yang, Gao Jingrong, Nag Anindya, Rahaman Abdul
School of Chemistry and Chemical Engineering, Guangzhou University, Guangzhou 510006, China.
Institute for NanoScale Science and Technology, College of Science and Engineering, Flinders University, Bedford Park 5042, Australia.
Nanomaterials (Basel). 2022 Mar 14;12(6):950. doi: 10.3390/nano12060950.
This paper presents a substantial review of the fabrication and implementation of graphene-PDMS-based composites for wearable sensing applications. Graphene is a pivotal nanomaterial which is increasingly being used to develop multifunctional sensors due to their enhanced electrical, mechanical, and thermal characteristics. It has been able to generate devices with excellent performances in terms of sensitivity and longevity. Among the polymers, polydimethylsiloxane (PDMS) has been one of the most common ones that has been used in biomedical applications. Certain attributes, such as biocompatibility and the hydrophobic nature of PDMS, have led the researchers to conjugate it in graphene sensors as substrates or a polymer matrix. The use of these graphene/PDMS-based sensors for wearable sensing applications has been highlighted here. Different kinds of electrochemical and strain-sensing applications have been carried out to detect the physiological signals and parameters of the human body. These prototypes have been classified based on the physical nature of graphene used to formulate the sensors. Finally, the current challenges and future perspectives of these graphene/PDMS-based wearable sensors are explained in the final part of the paper.
本文对用于可穿戴传感应用的基于石墨烯-聚二甲基硅氧烷的复合材料的制备与应用进行了全面综述。石墨烯是一种关键的纳米材料,由于其增强的电学、力学和热学特性,越来越多地被用于开发多功能传感器。它能够制造出在灵敏度和寿命方面具有优异性能的器件。在聚合物中,聚二甲基硅氧烷(PDMS)是生物医学应用中最常用的聚合物之一。PDMS的某些特性,如生物相容性和疏水性,促使研究人员将其作为基底或聚合物基质与石墨烯传感器结合。本文重点介绍了这些基于石墨烯/PDMS的传感器在可穿戴传感应用中的使用情况。已经开展了各种电化学和应变传感应用来检测人体的生理信号和参数。这些原型根据用于制造传感器的石墨烯的物理性质进行了分类。最后,本文最后一部分阐述了这些基于石墨烯/PDMS的可穿戴传感器当前面临的挑战和未来前景。