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Suh, Joonki
Semiconductor Nanotechnology Lab.
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Wafer-scale synthesis of monolayer two-dimensional porphyrin polymers for hybrid superlattices

Author(s)
Zhong, YuCheng, BaoruiPark, ChibeomRay, ArianaBrown, SarahMujid, FauziaLee, Jae-UngZhou, HuaSuh, JoonkiLee, Kan-HengMannix, Andrew J.Kang, KibumSibener, S. J.Muller, David A.Park, Jiwoong
Issued Date
2019-11
DOI
10.1126/science.aax9385
URI
https://scholarworks.unist.ac.kr/handle/201301/30486
Fulltext
https://science.sciencemag.org/content/early/2019/11/06/science.aax9385
Citation
SCIENCE, v.366, no.6471, pp.1379 - 1384
Abstract
The large-scale synthesis of high-quality thin films with extensive tunability derived from molecular building blocks will advance the development of artificial solids with designed functionalities. We report the synthesis of two-dimensional (2D) porphyrin polymer films with wafer-scale homogeneity in the ultimate limit of monolayer thickness by growing films at a sharp pentane/water interface, which allows the fabrication of their hybrid superlattices. Laminar assembly polymerization of porphyrin monomers could form monolayers of metal-organic frameworks with Cu2+ linkers or covalent organic frameworks with terephthalaldehyde linkers. Both the lattice structures and optical properties of these 2D films were directly controlled by the molecular monomers and polymerization chemistries. The 2D polymers were used to fabricate arrays of hybrid superlattices with MoS2 that could be used in electrical capacitors.
Publisher
American Association for the Advancement of Science
ISSN
0036-8075

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