Thaweeskulchai Thana, Schulte Albert
School of Biomolecular Science and Engineering, Vidyasirimedhi Institute of Science and Technology (VISTEC), Wang Chan Valley, Rayong 21210, Thailand.
Micromachines (Basel). 2022 Dec 14;13(12):2214. doi: 10.3390/mi13122214.
Wearable devices are a new class of healthcare monitoring devices designed for use in close contact with the patient's body. Such devices must be flexible to follow the contours of human anatomy. With numerous potential applications, a wide variety of flexible wearable devices have been created, taking various forms and functions. Therefore, different fabrication techniques and materials are employed, resulting in fragmentation of the list of equipment and materials needed to make different devices. This study attempted to simplify and streamline the fabrication process of all key components, including microfluidic chip and flexible electrode units. A combination of diode laser CNC machine and polyimide tape is used to fabricate flexible microfluidic chip and laser-induced graphene (LIG) electrodes, to create flexible microfluidic sensing devices. Laser ablation on polyimide tape can directly create microfluidic features on either PDMS substrates or LIG electrodes. The two components can be assembled to form a flexible microfluidic sensing device that can perform basic electrochemical analysis and conform to curved surfaces while undergoing microfluidic flow. This study has shown that simple, commonly available equipment and materials can be used to fabricate flexible microfluidic sensing devices quickly and easily, which is highly suitable for rapid prototyping of wearable devices.
可穿戴设备是一类新型的医疗监测设备,设计用于与患者身体紧密接触。此类设备必须具有柔韧性,以贴合人体解剖结构的轮廓。由于具有众多潜在应用,人们已经制造出了各种各样的柔性可穿戴设备,它们具有不同的形式和功能。因此,采用了不同的制造技术和材料,导致制造不同设备所需的设备和材料清单分散。本研究试图简化和优化所有关键组件的制造过程,包括微流控芯片和柔性电极单元。结合二极管激光数控机床和聚酰亚胺胶带,制造柔性微流控芯片和激光诱导石墨烯(LIG)电极,以创建柔性微流控传感设备。在聚酰亚胺胶带上进行激光烧蚀可以直接在PDMS基板或LIG电极上创建微流控特征。这两个组件可以组装成一个柔性微流控传感设备,该设备可以进行基本的电化学分析,并在微流控流动时贴合曲面。本研究表明,简单、常用的设备和材料可用于快速、轻松地制造柔性微流控传感设备,这非常适合可穿戴设备的快速原型制作。