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Self-assembly of an oligo(p-phenylenevinylene)-based molecule on an HOPG surface: insights from multi-scale simulation and STM observation

To gain knowledge of the most important weak interactions for supramolecular self-assembly and observe molecular structure for self-assembled architectures, the two-dimensional self-assembly of an oligo(p-phenylenevinylene)-based molecule (AS-OPV) on highly oriented pyrolytic graphite has been inves...

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Autores principales: Qin, Yuan, Yang, Yingying, Yao, Man, Xue, Xiaowan, Wang, Xudong, Huang, Hao, Chen, Ting, Wang, Dong, Wan, Lijun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9085817/
https://www.ncbi.nlm.nih.gov/pubmed/35547496
http://dx.doi.org/10.1039/c8ra05477k
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author Qin, Yuan
Yang, Yingying
Yao, Man
Xue, Xiaowan
Wang, Xudong
Huang, Hao
Chen, Ting
Wang, Dong
Wan, Lijun
author_facet Qin, Yuan
Yang, Yingying
Yao, Man
Xue, Xiaowan
Wang, Xudong
Huang, Hao
Chen, Ting
Wang, Dong
Wan, Lijun
author_sort Qin, Yuan
collection PubMed
description To gain knowledge of the most important weak interactions for supramolecular self-assembly and observe molecular structure for self-assembled architectures, the two-dimensional self-assembly of an oligo(p-phenylenevinylene)-based molecule (AS-OPV) on highly oriented pyrolytic graphite has been investigated. Accurate atomic configuration for the AS-OPV self-assembled pattern has been identified by means of multi-scale simulation combined with scanning tunneling microscopy (STM) experiments. The weak interactions which contribute to the formation of AS-OPV self-assembly are studied by analysis of non-covalent interactions existing in the system and theoretical calculation of their energy values. Investigation of the molecular structure of self-assembly and STM images at a certain temperature range is performed by molecular dynamics and density functional theory simulations. This work paves the way to explore the contribution of weak interactions for the self-assembly system, as well as providing a reference to observe the possible self-assembled structure at temperatures not convenient for direct experimental observation.
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spelling pubmed-90858172022-05-10 Self-assembly of an oligo(p-phenylenevinylene)-based molecule on an HOPG surface: insights from multi-scale simulation and STM observation Qin, Yuan Yang, Yingying Yao, Man Xue, Xiaowan Wang, Xudong Huang, Hao Chen, Ting Wang, Dong Wan, Lijun RSC Adv Chemistry To gain knowledge of the most important weak interactions for supramolecular self-assembly and observe molecular structure for self-assembled architectures, the two-dimensional self-assembly of an oligo(p-phenylenevinylene)-based molecule (AS-OPV) on highly oriented pyrolytic graphite has been investigated. Accurate atomic configuration for the AS-OPV self-assembled pattern has been identified by means of multi-scale simulation combined with scanning tunneling microscopy (STM) experiments. The weak interactions which contribute to the formation of AS-OPV self-assembly are studied by analysis of non-covalent interactions existing in the system and theoretical calculation of their energy values. Investigation of the molecular structure of self-assembly and STM images at a certain temperature range is performed by molecular dynamics and density functional theory simulations. This work paves the way to explore the contribution of weak interactions for the self-assembly system, as well as providing a reference to observe the possible self-assembled structure at temperatures not convenient for direct experimental observation. The Royal Society of Chemistry 2018-09-12 /pmc/articles/PMC9085817/ /pubmed/35547496 http://dx.doi.org/10.1039/c8ra05477k Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Qin, Yuan
Yang, Yingying
Yao, Man
Xue, Xiaowan
Wang, Xudong
Huang, Hao
Chen, Ting
Wang, Dong
Wan, Lijun
Self-assembly of an oligo(p-phenylenevinylene)-based molecule on an HOPG surface: insights from multi-scale simulation and STM observation
title Self-assembly of an oligo(p-phenylenevinylene)-based molecule on an HOPG surface: insights from multi-scale simulation and STM observation
title_full Self-assembly of an oligo(p-phenylenevinylene)-based molecule on an HOPG surface: insights from multi-scale simulation and STM observation
title_fullStr Self-assembly of an oligo(p-phenylenevinylene)-based molecule on an HOPG surface: insights from multi-scale simulation and STM observation
title_full_unstemmed Self-assembly of an oligo(p-phenylenevinylene)-based molecule on an HOPG surface: insights from multi-scale simulation and STM observation
title_short Self-assembly of an oligo(p-phenylenevinylene)-based molecule on an HOPG surface: insights from multi-scale simulation and STM observation
title_sort self-assembly of an oligo(p-phenylenevinylene)-based molecule on an hopg surface: insights from multi-scale simulation and stm observation
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9085817/
https://www.ncbi.nlm.nih.gov/pubmed/35547496
http://dx.doi.org/10.1039/c8ra05477k
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