Investigation on the mechanical and electrical properties of multiwall carbon nanotubes (MWNCTs) based isotropic conductive adhesives

Author:

Durairaj R.,Pheng Lim Seow,Ping Liew Jian

Abstract

Purpose The purpose of this paper is to characterise the electrical and mechanical properties of multiwall carbon nanotubes (MWCNTs)-based isotropic conductive adhesives (ICAs). The paper also compares the electrical and mechanical performance of MWCNTs-based ICAs with silver flakes and silver nanoparticles-based ICAs. Design/methodology/approach The ICAs were formulated with dyglycidyl ether bisphenol A epoxy resin and conductive fillers such as silver flakes, silver nanoparticles and MWCNTs. The four-point probe is used to measure the bulk resistivity of the ICAs. Findings The results from the study showed that the percolation threshold of the MWCNTs-based ICAs is 1.5 Wt.%. At 3 Wt.%, the drop in bulk resistivity is lower than the conventional ICAs. The addition of silver nanoparticles increased the overall bulk resistivity of the system. The mechanical properties improved with the introduction of carbon nanotubes into the silver flakes–epoxy system. Practical implications The results from bulk resistivity and mechanical properties of the MWCNTs could help to formulate MWCNTs-based ICAs with optimum weight fraction. Originality/value The paper demonstrates that the addition of MWCNTs to the silver-based ICAs will enhance their mechanical and electrical conductivity. In addition, the optimum weight percentage is also determined, which shows a bulk resistivity value lower along with improved mechanical property with the conventional ICA system.

Publisher

Emerald

Subject

Materials Chemistry,Surfaces, Coatings and Films

Reference14 articles.

1. Resistance vs pressure of single-wall carbon nanotubes;Applied Physics A,1998

2. Electrical conductivity of novel forms of carbon;Journal of Physics and Chemistry of Solids,1996

3. Probing electrical transport in nanomaterials: conductivity of individual carbon nanotubes;Science,1996

4. Electrical conductivity of individual carbon nanotubes;Nature,1996

5. Metallic resistivity in crystalline ropes of single-wall carbon nanotubes;Physical Review B,1997

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