Jang Jongmoon, Panusa Giulia, Boero Giovanni, Brugger Juergen
Microsystems Laboratory, École Polytechnique Fédérale de Lausanne (EPFL), 1015 Lausanne, Switzerland.
Department of Functional Ceramics, Korea Institute of Materials Science (KIMS), 51508 Changwon, Republic of Korea.
Microsyst Nanoeng. 2022 Feb 10;8:22. doi: 10.1038/s41378-022-00351-9. eCollection 2022.
Glass-like carbon (GC) is a nongraphitizing material composed entirely of carbon atoms produced from selected organic polymer resins by controlled pyrolysis in an inert atmosphere. The GC properties are a combination of the properties of glass, ceramic, and graphite, including hardness, low density, low thermal conductivity, high chemical inertness, biocompatibility, high electrical conductivity, and microfabrication process compatibility. Despite these unique properties, the application of GC in mechanical sensors has not been explored thus far. Here, we investigate the electrical, structural, and chemical properties of GC thin films derived from epoxy-based negative photoresist SU-8 pyrolyzed from 700 to 900 °C. In addition, we fabricated microGC piezoresistors pyrolyzed at 700 and 900 °C and integrated them into nonpyrolyzed SU-8 cantilevers to create microelectromechanical systems (MEMS) mechanical sensors. The sensitivities of the GC sensor to strain, force, surface stress, and acceleration are characterized to demonstrate their potential and limits for electromechanical microdevices.
玻璃态碳(GC)是一种完全由碳原子组成的非石墨化材料,它是通过在惰性气氛中对选定的有机聚合物树脂进行控制热解而产生的。GC的特性是玻璃、陶瓷和石墨特性的组合,包括硬度、低密度、低导热性、高化学惰性、生物相容性、高导电性以及与微加工工艺的兼容性。尽管具有这些独特的特性,但迄今为止,GC在机械传感器中的应用尚未得到探索。在此,我们研究了由环氧基负性光刻胶SU-8在700至900°C下热解得到的GC薄膜的电学、结构和化学性质。此外,我们制作了在700和900°C下热解的微GC压阻器,并将它们集成到未热解的SU-8悬臂梁中,以创建微机电系统(MEMS)机械传感器。对GC传感器对应变、力、表面应力和加速度的灵敏度进行了表征,以证明它们在机电微器件方面的潜力和局限性。