Deng Shikai, Rhee Dongjoon, Lee Won-Kyu, Che Songwei, Keisham Bijentimala, Berry Vikas, Odom Teri W
Department of Chemical Engineering , University of Illinois at Chicago , Chicago , Illinois 60607 , United States.
Nano Lett. 2019 Aug 14;19(8):5640-5646. doi: 10.1021/acs.nanolett.9b02178. Epub 2019 Jul 11.
This paper reports a scalable approach to achieve spatially selective graphene functionalization using multiscale wrinkles. Graphene wrinkles were formed by relieving the strain in thermoplastic polystyrene substrates conformally coated with fluoropolymer and graphene skin layers. Chemical reactivity of a fluorination process could be tuned by changing the local curvature of the graphene nanostructures. Patterned areas of graphene nanowrinkles and crumples followed by a single-process plasma reaction resulted in substrates with regions having different fluorination levels. Notably, conductivity of the functionalized graphene nanostructures could be locally tuned as a function of feature size without affecting the mechanical properties.
本文报道了一种利用多尺度褶皱实现空间选择性石墨烯功能化的可扩展方法。通过释放共形涂覆有含氟聚合物和石墨烯皮层的热塑性聚苯乙烯基底中的应变来形成石墨烯褶皱。氟化过程的化学反应性可通过改变石墨烯纳米结构的局部曲率来调节。石墨烯纳米皱纹和褶皱的图案化区域随后进行单步等离子体反应,得到具有不同氟化水平区域的基底。值得注意的是,功能化石墨烯纳米结构的电导率可根据特征尺寸进行局部调节,而不影响机械性能。