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Metal oxide patterns of one-dimensional nanofibers: on-demand, direct-write fabrication, and application as a novel platform for gas detection

Authors
Lim, KyeoreiJo, Young-MooYoon, Ji-WookLee, Jong-Heun
Issue Date
21-11월-2019
Publisher
ROYAL SOC CHEMISTRY
Citation
JOURNAL OF MATERIALS CHEMISTRY A, v.7, no.43, pp.24919 - 24928
Indexed
SCIE
SCOPUS
Journal Title
JOURNAL OF MATERIALS CHEMISTRY A
Volume
7
Number
43
Start Page
24919
End Page
24928
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/61555
DOI
10.1039/c9ta09708b
ISSN
2050-7488
Abstract
To organize one-dimensional (1D) metal oxides into highly ordered and controllable architectures on the required regions remains challenging. Herein, we report for the first time the facile, versatile, and on-demand fabrication of metal oxide patterns comprising 1D nanofibers via near-field electrospinning (NFES), which have a wide variety of potential applications in sensors, optoelectronic circuits, and functional nanoelectronics. Grids, diamonds, and hexagrams of In2O3, Co3O4, and NiO nanofibers are first demonstrated, and the underlying mechanisms for fiber formation are systematically investigated with respect to the experimental parameters of NFES. Furthermore, we propose the nano-architectures as a novel gas sensing platform that exhibits an unprecedentedly high gas response (resistance ratio, S-T = 239, T: trimethylamine) and selectivity (STSE-1 > 7, E: ethanol) to 5 ppm trimethylamine compared with thin film counterparts (S-T = 24, STSE-1 approximate to 1). The research provides a vital breakthrough to fabricate metal oxide nano-architectures of 1D nanofibers and new platforms to design next-generation functional nanodevices for a wide range of emerging applications.
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