Please use this identifier to cite or link to this item: http://earchive.tpu.ru/handle/11683/81011
Title: Reduced Graphene Oxide Nanostructures by Light: Going Beyond the Diffraction Limit
Authors: Rodriguez (Rodriges) Contreras, Raul David
Ma Bing
Ruban, Aleksey Sergeevich
Pavlov, Sergey Konstantinovich
Al-Hamry, Ammar
Prakash, Varnika
Khan, Munis
Murastov, Gennadiy Viktorovich
Mukherjee, Ashutosh
Khan, Zoheb
Shah Suhail, Z. A.
Lipovka, Anna Anatolyevna
Kanoun, Olfa
Mehta, Surinder Kumar
Sheremet, Evgeniya Sergeevna
Keywords: наноструктуры; оксид графена; биологические данные; оптоэлектронные устройства; термический отжиг; пленки; лазерные излучения; сенсоры
Issue Date: 2018
Citation: Reduced Graphene Oxide Nanostructures by Light: Going Beyond the Diffraction Limit / R. D. Rodriguez (Rodriges) Contreras, Ma Bing, A. S. Ruban [et al.] // Journal of Physics: Conference Series. — IOP Publishing Ltd.Bristol : IOP Publishing Ltd., 2018. — Vol. 1092 : Metamaterials and Nanophotonics METANANO 2018. — [012124, 5 p.]. — [012124, 5 p.].
Abstract: Graphene oxide (GO) offers excellent possibilities that are recently demonstrated in many applications ranging from biological sensors to optoelectronic devices. The process of thermal annealing aids in removing the oxygen-containing groups in GO, making GO more graphene-like, or the so-called reduced graphene oxide (rGO). Thermal reduction can also be achieved by intense light. Here, we demonstrate a scalable, inexpensive, and environmentally friendly method to pattern graphene oxide films beyond the diffraction limit of light using a conventional laser. We show that contrary to previous reports, non-linear effects that occur under high intensity conditions of laser irradiation allow the fabrication of highly conductive carbon nanowires with dimensions much smaller than the laser spot size. The potential of this method is illustrated by the fabrication of several devices on flexible and transparent substrates, including hybrid plasmonic/rGO sensors.
URI: http://earchive.tpu.ru/handle/11683/81011
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