Center for Integrated Nanostructure Physics, Institute for Basic Science (IBS), Sungkyunkwan University, Suwon, 440-746, Korea.
Department of Energy Science, Sungkyunkwan University, Suwon, 440-746, Korea.
Adv Mater. 2016 Jun;28(22):4541-8. doi: 10.1002/adma.201505559. Epub 2016 Jan 28.
Many studies have accompanied the emergence of a great interest in flexible or/and stretchable devices for new applications in wearable and futuristic technology, including human-interface devices, robotic skin, and biometric devices, and in optoelectronic devices. Especially, new nanodimensional materials enable flexibility or stretchability to be brought based on their dimensionality. Here, the emerging field of flexible devices is briefly introduced using silver nanowires and graphene, which are famous nanomaterials for the use of transparent conductive electrodes, as examples, and their unique functions originating from the intrinsic property of these nanomaterials are highlighted. It is thought that this work will evoke more interest and idea exchanges in this emerging field and hopefully can trigger a breakthrough on a new type of optoelectronics and optogenetic devices in the near future.
许多研究伴随着人们对灵活或/和可拉伸器件的极大兴趣而出现,这些器件有新的应用,包括可穿戴和未来技术中的人机接口设备、机器人皮肤和生物识别设备,以及光电子器件。特别是,新的纳米尺寸材料能够基于其维度带来柔韧性或可拉伸性。在这里,简要介绍了使用银纳米线和石墨烯作为透明导电电极的著名纳米材料的新兴灵活器件领域,并突出了这些纳米材料固有特性所产生的独特功能。人们认为,这项工作将在这个新兴领域引发更多的兴趣和思想交流,并有望在不久的将来推动新型光电和光遗传学器件的突破。