Cargando…

Supramolecular Loop Stitches of Discrete Block Molecules on Graphite: Tunable Hydrophobicity by Naphthalenediimide End-Capped Oligodimethylsiloxane

[Image: see text] The noncovalent functionalization of surfaces has gained widespread interest in the scientific community, and it is progressively becoming an extremely productive research field offering brand new directions for both supramolecular and materials chemistry. As the end-groups often p...

Descripción completa

Detalles Bibliográficos
Autores principales: Berrocal, José Augusto, Teyssandier, Joan, Goor, Olga J. G. M., De Feyter, Steven, Meijer, E. W.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2018
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5973779/
https://www.ncbi.nlm.nih.gov/pubmed/29861547
http://dx.doi.org/10.1021/acs.chemmater.8b00820
_version_ 1783326694100172800
author Berrocal, José Augusto
Teyssandier, Joan
Goor, Olga J. G. M.
De Feyter, Steven
Meijer, E. W.
author_facet Berrocal, José Augusto
Teyssandier, Joan
Goor, Olga J. G. M.
De Feyter, Steven
Meijer, E. W.
author_sort Berrocal, José Augusto
collection PubMed
description [Image: see text] The noncovalent functionalization of surfaces has gained widespread interest in the scientific community, and it is progressively becoming an extremely productive research field offering brand new directions for both supramolecular and materials chemistry. As the end-groups often play a dominant role in the surface properties obtained, creating loops with end-groups only at the surface will lead to unexpected architectures and hence properties. Here we report the self-assembly of discrete block molecules—structures in-between block copolymers and liquid crystals—featuring oligodimethylsiloxanes (ODMS) end-capped with naphthalenediimides (NDIs) at the 1-phenyloctane/highly oriented pyrolytic graphite (1-PO/HOPG) interface. These structures produce unprecedented vertically nanophase-separated monolayers featuring NDI moieties that regularly arrange on the HOPG surface, while the highly dynamic ODMS segments form loops above them. Such arrangement is preserved upon drying and generates hydrophobic HOPG substrates in which the ODMS block length tunes the hydrophobicity. Thus, the exact structural fidelity of the discrete macromolecules allows for the correlation of nanoscopic organization with macroscopic properties of the self-assembled materials. We present a general strategy for tunable hydrophobic coatings on graphite based on molecularly combining crystalline aromatic moieties and immiscible oligodimethylsiloxanes.
format Online
Article
Text
id pubmed-5973779
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher American Chemical Society
record_format MEDLINE/PubMed
spelling pubmed-59737792018-05-30 Supramolecular Loop Stitches of Discrete Block Molecules on Graphite: Tunable Hydrophobicity by Naphthalenediimide End-Capped Oligodimethylsiloxane Berrocal, José Augusto Teyssandier, Joan Goor, Olga J. G. M. De Feyter, Steven Meijer, E. W. Chem Mater [Image: see text] The noncovalent functionalization of surfaces has gained widespread interest in the scientific community, and it is progressively becoming an extremely productive research field offering brand new directions for both supramolecular and materials chemistry. As the end-groups often play a dominant role in the surface properties obtained, creating loops with end-groups only at the surface will lead to unexpected architectures and hence properties. Here we report the self-assembly of discrete block molecules—structures in-between block copolymers and liquid crystals—featuring oligodimethylsiloxanes (ODMS) end-capped with naphthalenediimides (NDIs) at the 1-phenyloctane/highly oriented pyrolytic graphite (1-PO/HOPG) interface. These structures produce unprecedented vertically nanophase-separated monolayers featuring NDI moieties that regularly arrange on the HOPG surface, while the highly dynamic ODMS segments form loops above them. Such arrangement is preserved upon drying and generates hydrophobic HOPG substrates in which the ODMS block length tunes the hydrophobicity. Thus, the exact structural fidelity of the discrete macromolecules allows for the correlation of nanoscopic organization with macroscopic properties of the self-assembled materials. We present a general strategy for tunable hydrophobic coatings on graphite based on molecularly combining crystalline aromatic moieties and immiscible oligodimethylsiloxanes. American Chemical Society 2018-05-01 2018-05-22 /pmc/articles/PMC5973779/ /pubmed/29861547 http://dx.doi.org/10.1021/acs.chemmater.8b00820 Text en Copyright © 2018 American Chemical Society This is an open access article published under a Creative Commons Non-Commercial No Derivative Works (CC-BY-NC-ND) Attribution License (http://pubs.acs.org/page/policy/authorchoice_ccbyncnd_termsofuse.html) , which permits copying and redistribution of the article, and creation of adaptations, all for non-commercial purposes.
spellingShingle Berrocal, José Augusto
Teyssandier, Joan
Goor, Olga J. G. M.
De Feyter, Steven
Meijer, E. W.
Supramolecular Loop Stitches of Discrete Block Molecules on Graphite: Tunable Hydrophobicity by Naphthalenediimide End-Capped Oligodimethylsiloxane
title Supramolecular Loop Stitches of Discrete Block Molecules on Graphite: Tunable Hydrophobicity by Naphthalenediimide End-Capped Oligodimethylsiloxane
title_full Supramolecular Loop Stitches of Discrete Block Molecules on Graphite: Tunable Hydrophobicity by Naphthalenediimide End-Capped Oligodimethylsiloxane
title_fullStr Supramolecular Loop Stitches of Discrete Block Molecules on Graphite: Tunable Hydrophobicity by Naphthalenediimide End-Capped Oligodimethylsiloxane
title_full_unstemmed Supramolecular Loop Stitches of Discrete Block Molecules on Graphite: Tunable Hydrophobicity by Naphthalenediimide End-Capped Oligodimethylsiloxane
title_short Supramolecular Loop Stitches of Discrete Block Molecules on Graphite: Tunable Hydrophobicity by Naphthalenediimide End-Capped Oligodimethylsiloxane
title_sort supramolecular loop stitches of discrete block molecules on graphite: tunable hydrophobicity by naphthalenediimide end-capped oligodimethylsiloxane
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5973779/
https://www.ncbi.nlm.nih.gov/pubmed/29861547
http://dx.doi.org/10.1021/acs.chemmater.8b00820
work_keys_str_mv AT berrocaljoseaugusto supramolecularloopstitchesofdiscreteblockmoleculesongraphitetunablehydrophobicitybynaphthalenediimideendcappedoligodimethylsiloxane
AT teyssandierjoan supramolecularloopstitchesofdiscreteblockmoleculesongraphitetunablehydrophobicitybynaphthalenediimideendcappedoligodimethylsiloxane
AT goorolgajgm supramolecularloopstitchesofdiscreteblockmoleculesongraphitetunablehydrophobicitybynaphthalenediimideendcappedoligodimethylsiloxane
AT defeytersteven supramolecularloopstitchesofdiscreteblockmoleculesongraphitetunablehydrophobicitybynaphthalenediimideendcappedoligodimethylsiloxane
AT meijerew supramolecularloopstitchesofdiscreteblockmoleculesongraphitetunablehydrophobicitybynaphthalenediimideendcappedoligodimethylsiloxane