Dynamic self-stabilization in the electronic and nanomechanical properties of an organic polymer semiconductor

Organic polymer nanomechanics has been explored through precise nanometre-scale stiffness measurements in a high-mobility semiconducting polymer. Higher eigen-mode atomic force microscopy is used to measure nanomechnical variations in the film texture, as well as the nanoscale order in the material.

Bibliographic Details
Main Authors: Illia Dobryden, Vladimir V. Korolkov, Vincent Lemaur, Matthew Waldrip, Hio-Ieng Un, Dimitrios Simatos, Leszek J. Spalek, Oana D. Jurchescu, Yoann Olivier, Per M. Claesson, Deepak Venkateshvaran
Format: Article
Language:English
Published: Nature Portfolio 2022-06-01
Series:Nature Communications
Online Access:https://doi.org/10.1038/s41467-022-30801-x
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author Illia Dobryden
Vladimir V. Korolkov
Vincent Lemaur
Matthew Waldrip
Hio-Ieng Un
Dimitrios Simatos
Leszek J. Spalek
Oana D. Jurchescu
Yoann Olivier
Per M. Claesson
Deepak Venkateshvaran
author_facet Illia Dobryden
Vladimir V. Korolkov
Vincent Lemaur
Matthew Waldrip
Hio-Ieng Un
Dimitrios Simatos
Leszek J. Spalek
Oana D. Jurchescu
Yoann Olivier
Per M. Claesson
Deepak Venkateshvaran
author_sort Illia Dobryden
collection DOAJ
description Organic polymer nanomechanics has been explored through precise nanometre-scale stiffness measurements in a high-mobility semiconducting polymer. Higher eigen-mode atomic force microscopy is used to measure nanomechnical variations in the film texture, as well as the nanoscale order in the material.
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spelling doaj.art-3aac4fa7582d4c4b9e4c5dbb2215a9de2022-12-22T03:21:58ZengNature PortfolioNature Communications2041-17232022-06-0113111110.1038/s41467-022-30801-xDynamic self-stabilization in the electronic and nanomechanical properties of an organic polymer semiconductorIllia Dobryden0Vladimir V. Korolkov1Vincent Lemaur2Matthew Waldrip3Hio-Ieng Un4Dimitrios Simatos5Leszek J. Spalek6Oana D. Jurchescu7Yoann Olivier8Per M. Claesson9Deepak Venkateshvaran10Division of Surface and Corrosion Science, Department of Chemistry, School of Engineering Sciences in Chemistry, Biotechnology and Health, KTH Royal Institute of TechnologyPark Systems UK Limited, MediCity NottinghamLaboratory for Chemistry of Novel Materials, University of MonsDepartment of Physics and Center for Functional Materials, Wake Forest UniversityCavendish Laboratory, University of CambridgeCavendish Laboratory, University of CambridgeCavendish Laboratory, University of CambridgeDepartment of Physics and Center for Functional Materials, Wake Forest UniversityLaboratory for Computational Modelling of Functional Materials, Namur Institute of Structured Matter, Université de NamurDivision of Surface and Corrosion Science, Department of Chemistry, School of Engineering Sciences in Chemistry, Biotechnology and Health, KTH Royal Institute of TechnologyCavendish Laboratory, University of CambridgeOrganic polymer nanomechanics has been explored through precise nanometre-scale stiffness measurements in a high-mobility semiconducting polymer. Higher eigen-mode atomic force microscopy is used to measure nanomechnical variations in the film texture, as well as the nanoscale order in the material.https://doi.org/10.1038/s41467-022-30801-x
spellingShingle Illia Dobryden
Vladimir V. Korolkov
Vincent Lemaur
Matthew Waldrip
Hio-Ieng Un
Dimitrios Simatos
Leszek J. Spalek
Oana D. Jurchescu
Yoann Olivier
Per M. Claesson
Deepak Venkateshvaran
Dynamic self-stabilization in the electronic and nanomechanical properties of an organic polymer semiconductor
Nature Communications
title Dynamic self-stabilization in the electronic and nanomechanical properties of an organic polymer semiconductor
title_full Dynamic self-stabilization in the electronic and nanomechanical properties of an organic polymer semiconductor
title_fullStr Dynamic self-stabilization in the electronic and nanomechanical properties of an organic polymer semiconductor
title_full_unstemmed Dynamic self-stabilization in the electronic and nanomechanical properties of an organic polymer semiconductor
title_short Dynamic self-stabilization in the electronic and nanomechanical properties of an organic polymer semiconductor
title_sort dynamic self stabilization in the electronic and nanomechanical properties of an organic polymer semiconductor
url https://doi.org/10.1038/s41467-022-30801-x
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