Logo image
Selective gold nano-patterning on flexible polymer substrate via concurrent nanoimprinting and nanotransfer printing
Journal article   Peer reviewed

Selective gold nano-patterning on flexible polymer substrate via concurrent nanoimprinting and nanotransfer printing

J.B.K. Law, R.T.T. Khoo, B.S. Tan and H.Y. Low
Applied surface science, Vol.258(2), pp.748-754
01/11/2011

Abstract

Flexible substrate Gold nano-pattern Nano-transferprinting Nanoimprinting Non-planar polymer Self-aligned Self-assembled monolayer Work of adhesion
We report a simple technique of selective gold nano-patterning on non-planar polycarbonate substrate by combining nanoimprinting and gold nanotransfer printing techniques in a single concurrent nano-patterning process: thermal nanoimprinting directly patterns a MPTMS (3-mercaptopropyl trimethoxysilane)-coated polycarbonate sheet to form the non-planar nanostructures using a gold-film deposited mold. Simultaneously, the gold-film from the mold is selectively transfer-printed either onto the protrusion or the base of the imprinted non-planar structures. This high nano-patterning selectivity is achieved due to a combined effect of a thiol-terminated MPTMS–gold surface chemistry, more importantly, aided by a surface area dependent differential work of adhesion. We show the high delineation of the patterned gold on the non-planar polycarbonate substrate of various geometries such as pillars, dimples, and gratings, down to nano-scale resolution (130nm) as well as over micro-scale resolution (10μm), thus demonstrating that this can be a generic metal patterning technique. Using this technique, we fabricate a metal nanowire grid polarizer to demonstrate a potential device application. The main advantage of this technique lies in its inherent self-aligned process that simplifies selective Au nano-patterning on non-planar polymer surfaces, which is otherwise difficult to be obtained using conventional patterning techniques.

Metrics

1 Record Views

Details

Logo image