Controlled rippling of graphene via irradiation and applied strain modify its mechanical properties: a nanoindentation simulation study


Autoria(s): Martínez Asencio, Jesús; Ruestes, Carlos; Bringa, Eduardo M.; Caturla Terol, María José
Contribuinte(s)

Universidad de Alicante. Departamento de Física Aplicada

Grupo de Nanofísica

Física de la Materia Condensada

Data(s)

21/04/2016

21/04/2016

20/04/2016

Resumo

Ripples, present in free standing graphene, have an important influence in the mechanical behavior of this two-dimensional material. In this work we show through nanoindentation simulations, how out-of-plane displacements can be modified by strain resulting in softening of the membrane under compression and stiffening under tension. Irradiation also induces changes in the mechanical properties of graphene. Interestingly, compressed samples, irradiated at low doses are stiffened by the irradiation while samples under tensile strain do not show significant changes in their mechanical properties. These simulations indicate that vacancies, produced by the energetic ions, cannot be the ones directly responsible for this behavior. However, changes in roughness induced by the momentum transferred from the energetic ions to the membrane, can explain these differences. These results provide an alternative explanation to recent experimental observations of stiffening of graphene under low dose irradiation, as well as paths to tailor the mechanical properties of this material via applied strain and irradiation.

This work is supported by the Generalitat Valenciana through grant reference PROMETEO2012/011 and the Spanish government through grant FIS2010-21883. CJR and EMB thanks support from SeCTyP-UNCuyo grant M003, and ANPCyT grant PICT-2014-0696. CJR thanks CONICET and the 310 Group at FCEN-UNCuyo.

Identificador

Physical Chemistry Chemical Physics. 2016. 18: 13897-13903. doi:10.1039/C6CP01487A

1463-9076 (Print)

1463-9084 (Online)

http://hdl.handle.net/10045/54336

10.1039/C6CP01487A

Idioma(s)

eng

Publicador

Royal Society of Chemistry

Relação

http://dx.doi.org/10.1039/C6CP01487A

Direitos

© Royal Society of Chemistry 2016

info:eu-repo/semantics/embargoedAccess

Palavras-Chave #Ripples #Graphene #Mechanical properties #Nanoindentation simulation #Física Aplicada
Tipo

info:eu-repo/semantics/article