SKKU Advanced Institute of Nanotechnology (SAINT) and Center for Human Interface Nano Technology (HINT), Republic of Korea.
Nano Lett. 2011 Mar 9;11(3):977-81. doi: 10.1021/nl103618e. Epub 2011 Jan 31.
A novel graphene-on-organic film fabrication method that is compatible with a batch microfabrication process was developed and used for electromechanically driven microactuators. A very thin layer of graphene sheets was monolithically integrated and the unique material characteristics of graphene including negative thermal expansion and high electrical conductivity were exploited to produce a bimorph actuation. A large displacement with rapid response was observed while maintaining the low power consumption. This enabled the successful demonstration of transparent graphene-based organic microactuators.
开发了一种与批量微加工工艺兼容的新型石墨烯有机薄膜制造方法,并将其用于机电驱动微致动器。通过该方法可以将非常薄的石墨烯片层整体集成,并且利用石墨烯的独特材料特性,包括负热膨胀和高导电性,来制作双折射致动器。在保持低功耗的同时,实现了大位移快速响应。这使得透明的基于石墨烯的有机微致动器得以成功展示。