Lithography-free synthesis of periodic, vertically-aligned, multi-walled carbon nanotube arrays

Author:

Chen Ruiting,Xue Yafei,Xu Xinyue,Yang Hui,Qiu Tengfei,Shui LinglingORCID,Wang Xin,Zhou Guofu,Giersig Michael,Pidot SachaORCID,Hutchison James A,Akinoglu Eser MetinORCID

Abstract

Abstract Until now, the growth of periodic vertically aligned multi-walled carbon nanotube (VA-MWCNT) arrays was dependent on at least one lithography step during fabrication. Here, we demonstrate a lithography-free fabrication method to grow hexagonal arrays of self-standing VA-MWCNTs with tunable pitch and MWCNT size. The MWCNTs are synthesized by plasma enhanced chemical vapor deposition (PECVD) from Ni catalyst particles. Template guided dewetting of a thin Ni film on a hexagonally close-packed silica particle monolayer provides periodically distributed Ni catalyst particles as seeds for the growth of the periodic MWCNT arrays. The diameter of the silica particles directly controls the pitch of the periodic VA-MWCNT arrays from 600 nm to as small as 160 nm. The diameter and length of the individual MWCNTs can also be readily adjusted and are a function of the Ni particle size and PECVD time. This unique method of lithography-free growth of periodic VA-MWCNT arrays can be utilized for the fabrication of large-scale biomimetic materials.

Funder

University of Melbourne

Guangdong Innovative and Entrepreneurial Team Program

Australian Research Council

UQ Development Fellowships

Guangdong Science and Technology Department

Publisher

IOP Publishing

Subject

Electrical and Electronic Engineering,Mechanical Engineering,Mechanics of Materials,General Materials Science,General Chemistry,Bioengineering

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