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Facile synthesis of diverse graphene nanomeshes based on simultaneous regulation of pore size and surface structure.


ABSTRACT: Recently, graphene nanomesh (GNM) has attracted great attentions due to its unique porous structure, abundant active sites, finite band gap and possesses potential applications in the fields of electronics, gas sensor/storage, catalysis, etc. Therefore, diverse GNMs with different physical and chemical properties are required urgently to meet different applications. Herein we demonstrate a facile synthetic method based on the famous Fenton reaction to prepare GNM, by using economically fabricated graphene oxide (GO) as a starting material. By precisely controlling the reaction time, simultaneous regulation of pore size from 2.9 to 11.1?nm and surface structure can be realized. Ultimately, diverse GNMs with tunable band gap and work function can be obtained. Specially, the band gap decreases from 4.5-2.3?eV for GO, which is an insulator, to 3.9-1.24?eV for GNM-5?h, which approaches to a semiconductor. The dual nature of electrophilic addition and oxidizability of HO(•) is responsible for this controllable synthesis. This efficient, low-cost, inherently scalable synthetic method is suitable for provide diverse and optional GNMs, and may be generalized to a universal technique.

SUBMITTER: Zhang J 

PROVIDER: S-EPMC4999802 | biostudies-other | 2016

REPOSITORIES: biostudies-other

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Facile synthesis of diverse graphene nanomeshes based on simultaneous regulation of pore size and surface structure.

Zhang Jia J   Song Huaibing H   Zeng Dawen D   Wang Hao H   Qin Ziyu Z   Xu Keng K   Pang Aimin A   Xie Changsheng C  

Scientific reports 20160826


Recently, graphene nanomesh (GNM) has attracted great attentions due to its unique porous structure, abundant active sites, finite band gap and possesses potential applications in the fields of electronics, gas sensor/storage, catalysis, etc. Therefore, diverse GNMs with different physical and chemical properties are required urgently to meet different applications. Herein we demonstrate a facile synthetic method based on the famous Fenton reaction to prepare GNM, by using economically fabricate  ...[more]

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