Customizable fabrication for auxetic graphene assembled macrofilms with high conductivity and flexibility

Date

2020-02-25

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Volume Title

Publisher

Elsevier

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Type

Article

ISSN

0008-6223

Format

Citation

Li P, Wang Z, Song R, et al., (2020) Customizable fabrication for auxetic graphene assembled macrofilms with high conductivity and flexibility. Carbon, Volume 162, June 2020, pp. 545-551

Abstract

Auxetic materials with negative Poisson's ratios unusually exhibit intuitive mechanical behaviors, such as cross-section expansion instead of contraction during tension. Such behaviors are interesting because they may enhance unusual mechanical properties. However, controllable preparation of materials with negative Poisson's ratio is still a major challenge. In this study, we report the synthesis of a flexible auxetic graphene assembled macrofilm (GAMF) from graphene oxide nanosheets by a thermal annealing and press assistant method. The obtained materials exhibit good flexibility and significantly wide tunable negative Poisson's ratios ranging from −0.11 to −0.53. We also develop a reconstruction model for characterization the uniaxial tension of GAMF based on X-ray tomographic images. The tensile simulation result predicts the function relationship between Poisson's ratio and critical thickness of pore channels, which is in good agreement with the experimental data. As a result, an effective tunable way is proposed for customizable fabrication of GAMF with tunable negative Poisson's ratios, and the GAMF materials with good flexibility, high electrical conductivity and superior auxetic behavior looks promising for future development of wearable electronics.

Description

Software Description

Software Language

Github

Keywords

Auxetic materials, Negetive Poisson's ratio, Porous graphene film, Prediction of tunable Poisson's ratio

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Attribution-NonCommercial-NoDerivatives 4.0 International

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