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Highly Aligned Carbon Nanowire Array by E-Field Directed Assembly of PAN-Containing Block Copolymers

Authors :
Sang Ouk Kim
Young Kyu Ko
Jang Hwan Kim
Ho Jin Lee
Hohyung Kang
Seung Keun Cha
Geon Gug Yang
Hannes Jung
Hee Jae Choi
Gil Yong Lee
Kyu Hyo Han
Taeyoung Yun
Hyeong Min Jin
Source :
ACS applied materialsinterfaces. 12(52)
Publication Year :
2020

Abstract

Nanoscale engineering of carbon materials is immensely demanded in various scientific areas. We present highly ordered nitrogen-doped carbon nanowire arrays via block copolymer (BCP) self-assembly under an electric field. Large dielectric constant difference between distinct polymer blocks offers rapid alignment of PMMA-b-PAN self-assembled nanodomains under an electric field. Lithographic patterning of the graphene electrode as well as straightforward thermal carbonization of the PAN block creates well-aligned carbon nanowire device structures. Diverse carbon nanopatterns including radial and curved arrays can be readily assembled by the modification of electrode shapes. Our carbon nanopatterns bear a nitrogen content over 26%, highly desirable for NO2 sensing, as the nitrogen element acts as adsorption sites for NO2 molecules. Aligned carbon nanowire arrays exhibits a 6-fold enhancement of NO2 sensitivity from a randomly aligned counterpart. Taking advantage of well-established benefits from device-oriented BCP nanopatterning, our approach proposes a viable route to highly ordered carbon nanostructures compatible to next-generation device architectures.

Details

ISSN :
19448252
Volume :
12
Issue :
52
Database :
OpenAIRE
Journal :
ACS applied materialsinterfaces
Accession number :
edsair.doi.dedup.....c2160037ccad6b4c9423c1c7eb6e8bba