Continuous negative-to-positive tuning of thermal expansion achieved by controlled gas sorption in porous coordination frameworks

Achieving control over the thermomechanical properties of functional materials is desirable, yet remains highly challenging. Here, the authors demonstrate continuous negative-to-positive tuning of thermal expansion in two Prussian blue analogues, by varying the concentration of adsorbed CO2.

Bibliographic Details
Main Authors: Josie E. Auckett, Arnold A. Barkhordarian, Stephen H. Ogilvie, Samuel G. Duyker, Hubert Chevreau, Vanessa K. Peterson, Cameron J. Kepert
Format: Article
Language:English
Published: Nature Portfolio 2018-11-01
Series:Nature Communications
Online Access:https://doi.org/10.1038/s41467-018-06850-6
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author Josie E. Auckett
Arnold A. Barkhordarian
Stephen H. Ogilvie
Samuel G. Duyker
Hubert Chevreau
Vanessa K. Peterson
Cameron J. Kepert
author_facet Josie E. Auckett
Arnold A. Barkhordarian
Stephen H. Ogilvie
Samuel G. Duyker
Hubert Chevreau
Vanessa K. Peterson
Cameron J. Kepert
author_sort Josie E. Auckett
collection DOAJ
description Achieving control over the thermomechanical properties of functional materials is desirable, yet remains highly challenging. Here, the authors demonstrate continuous negative-to-positive tuning of thermal expansion in two Prussian blue analogues, by varying the concentration of adsorbed CO2.
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spelling doaj.art-f76b06f294574459aa5fe53ad4d4dc8b2022-12-21T20:36:00ZengNature PortfolioNature Communications2041-17232018-11-01911510.1038/s41467-018-06850-6Continuous negative-to-positive tuning of thermal expansion achieved by controlled gas sorption in porous coordination frameworksJosie E. Auckett0Arnold A. Barkhordarian1Stephen H. Ogilvie2Samuel G. Duyker3Hubert Chevreau4Vanessa K. Peterson5Cameron J. Kepert6Australian Centre for Neutron Scattering, Australian Nuclear Science and Technology OrganisationSchool of Chemistry, The University of SydneySchool of Chemistry, The University of SydneySchool of Chemistry, The University of SydneyAustralian Centre for Neutron Scattering, Australian Nuclear Science and Technology OrganisationAustralian Centre for Neutron Scattering, Australian Nuclear Science and Technology OrganisationSchool of Chemistry, The University of SydneyAchieving control over the thermomechanical properties of functional materials is desirable, yet remains highly challenging. Here, the authors demonstrate continuous negative-to-positive tuning of thermal expansion in two Prussian blue analogues, by varying the concentration of adsorbed CO2.https://doi.org/10.1038/s41467-018-06850-6
spellingShingle Josie E. Auckett
Arnold A. Barkhordarian
Stephen H. Ogilvie
Samuel G. Duyker
Hubert Chevreau
Vanessa K. Peterson
Cameron J. Kepert
Continuous negative-to-positive tuning of thermal expansion achieved by controlled gas sorption in porous coordination frameworks
Nature Communications
title Continuous negative-to-positive tuning of thermal expansion achieved by controlled gas sorption in porous coordination frameworks
title_full Continuous negative-to-positive tuning of thermal expansion achieved by controlled gas sorption in porous coordination frameworks
title_fullStr Continuous negative-to-positive tuning of thermal expansion achieved by controlled gas sorption in porous coordination frameworks
title_full_unstemmed Continuous negative-to-positive tuning of thermal expansion achieved by controlled gas sorption in porous coordination frameworks
title_short Continuous negative-to-positive tuning of thermal expansion achieved by controlled gas sorption in porous coordination frameworks
title_sort continuous negative to positive tuning of thermal expansion achieved by controlled gas sorption in porous coordination frameworks
url https://doi.org/10.1038/s41467-018-06850-6
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