Skip to main content
  • Submit
  • About
    • Editorial Board
    • PNAS Staff
    • FAQ
    • Accessibility Statement
    • Rights and Permissions
    • Site Map
  • Contact
  • Journal Club
  • Subscribe
    • Subscription Rates
    • Subscriptions FAQ
    • Open Access
    • Recommend PNAS to Your Librarian
  • Log in
  • My Cart

Main menu

  • Home
  • Articles
    • Current
    • Special Feature Articles - Most Recent
    • Special Features
    • Colloquia
    • Collected Articles
    • PNAS Classics
    • List of Issues
  • Front Matter
  • News
    • For the Press
    • This Week In PNAS
    • PNAS in the News
  • Podcasts
  • Authors
    • Information for Authors
    • Editorial and Journal Policies
    • Submission Procedures
    • Fees and Licenses
  • Submit
  • About
    • Editorial Board
    • PNAS Staff
    • FAQ
    • Accessibility Statement
    • Rights and Permissions
    • Site Map
  • Contact
  • Journal Club
  • Subscribe
    • Subscription Rates
    • Subscriptions FAQ
    • Open Access
    • Recommend PNAS to Your Librarian

User menu

  • Log in
  • My Cart

Search

  • Advanced search
Home
Home

Advanced Search

  • Home
  • Articles
    • Current
    • Special Feature Articles - Most Recent
    • Special Features
    • Colloquia
    • Collected Articles
    • PNAS Classics
    • List of Issues
  • Front Matter
  • News
    • For the Press
    • This Week In PNAS
    • PNAS in the News
  • Podcasts
  • Authors
    • Information for Authors
    • Editorial and Journal Policies
    • Submission Procedures
    • Fees and Licenses

New Research In

Physical Sciences

Featured Portals

  • Physics
  • Chemistry
  • Sustainability Science

Articles by Topic

  • Applied Mathematics
  • Applied Physical Sciences
  • Astronomy
  • Computer Sciences
  • Earth, Atmospheric, and Planetary Sciences
  • Engineering
  • Environmental Sciences
  • Mathematics
  • Statistics

Social Sciences

Featured Portals

  • Anthropology
  • Sustainability Science

Articles by Topic

  • Economic Sciences
  • Environmental Sciences
  • Political Sciences
  • Psychological and Cognitive Sciences
  • Social Sciences

Biological Sciences

Featured Portals

  • Sustainability Science

Articles by Topic

  • Agricultural Sciences
  • Anthropology
  • Applied Biological Sciences
  • Biochemistry
  • Biophysics and Computational Biology
  • Cell Biology
  • Developmental Biology
  • Ecology
  • Environmental Sciences
  • Evolution
  • Genetics
  • Immunology and Inflammation
  • Medical Sciences
  • Microbiology
  • Neuroscience
  • Pharmacology
  • Physiology
  • Plant Biology
  • Population Biology
  • Psychological and Cognitive Sciences
  • Sustainability Science
  • Systems Biology
Research Article

Glass–liquid transition of water at high pressure

Ove Andersson
PNAS July 5, 2011 108 (27) 11013-11016; https://doi.org/10.1073/pnas.1016520108
Ove Andersson
  • Find this author on Google Scholar
  • Find this author on PubMed
  • Search for this author on this site
  • For correspondence: ove.andersson@physics.umu.se
  1. Edited by H. Eugene Stanley, Boston University, Boston, MA, and approved May 25, 2011 (received for review November 8, 2010)

  • Article
  • Figures & SI
  • Info & Metrics
  • PDF
Loading

Online Impact

 

Article Information

vol. 108 no. 27 11013-11016
DOI: 
https://doi.org/10.1073/pnas.1016520108
PubMed: 
21690361

Published By: 
National Academy of Sciences
Print ISSN: 
0027-8424
Online ISSN: 
1091-6490
History: 
  • Published in issue July 5, 2011.
  • Published first June 20, 2011.


Author Information

  1. Ove Andersson1
  1. Department of Physics, Umeå University, 901 87 Umeå, Sweden
  1. Edited by H. Eugene Stanley, Boston University, Boston, MA, and approved May 25, 2011 (received for review November 8, 2010)

Footnotes

  • ↵1To whom correspondence should be addressed. E-mail: ove.andersson{at}physics.umu.se.
  • Author contributions: O.A. designed research, performed research, analyzed data, and wrote the paper.

  • The author declares no conflict of interest.

  • This article is a PNAS Direct Submission.

  • This article contains supporting information online at www.pnas.org/lookup/suppl/doi:10.1073/pnas.1016520108/-/DCSupplemental.

Cited By...

  • 49 Citations
  • 53 Citations
  • Google Scholar

This article has been cited by the following articles in journals that are participating in Crossref Cited-by Linking.

  • Water: A Tale of Two Liquids
    Paola Gallo, Katrin Amann-Winkel, Charles Austen Angell, Mikhail Alexeevich Anisimov, Frédéric Caupin, Charusita Chakravarty, Erik Lascaris, Thomas Loerting, Athanassios Zois Panagiotopoulos, John Russo, Jonas Alexander Sellberg, Harry Eugene Stanley, Hajime Tanaka, Carlos Vega, Limei Xu, Lars Gunnar Moody Pettersson
    Chemical Reviews 2016 116 13
  • Water's second glass transition
    K. Amann-Winkel, C. Gainaru, P. H. Handle, M. Seidl, H. Nelson, R. Bohmer, T. Loerting
    Proceedings of the National Academy of Sciences 2013 110 44
  • Colloquium: Water’s controversial glass transitions
    Katrin Amann-Winkel, Roland Böhmer, Franz Fujara, Catalin Gainaru, Burkhard Geil, Thomas Loerting
    Reviews of Modern Physics 2016 88 1
  • Diffusive dynamics during the high-to-low density transition in amorphous ice
    Fivos Perakis, Katrin Amann-Winkel, Felix Lehmkühler, Michael Sprung, Daniel Mariedahl, Jonas A. Sellberg, Harshad Pathak, Alexander Späh, Filippo Cavalca, Daniel Schlesinger, Alessandro Ricci, Avni Jain, Bernhard Massani, Flora Aubree, Chris J. Benmore, Thomas Loerting, Gerhard Grübel, Lars G. M. Pettersson, Anders Nilsson
    Proceedings of the National Academy of Sciences 2017 114 31
  • X-ray and Neutron Scattering of Water
    Katrin Amann-Winkel, Marie-Claire Bellissent-Funel, Livia E. Bove, Thomas Loerting, Anders Nilsson, Alessandro Paciaroni, Daniel Schlesinger, Lawrie Skinner
    Chemical Reviews 2016 116 13
  • Local structure analysis in ab initio liquid water
    Biswajit Santra, Robert A. DiStasio, Fausto Martelli, Roberto Car
    Molecular Physics 2015 113 17-18
  • Interplay of the Glass Transition and the Liquid-Liquid Phase Transition in Water
    Nicolas Giovambattista, Thomas Loerting, Boris R. Lukanov, Francis W. Starr
    Scientific Reports 2012 2 1
  • Molecular Reorientation Dynamics Govern the Glass Transitions of the Amorphous Ices
    J. J. Shephard, C. G. Salzmann
    The Journal of Physical Chemistry Letters 2016 7 12
  • Supercooled and glassy water: Metastable liquid(s), amorphous solid(s), and a no-man’s land
    Philip H. Handle, Thomas Loerting, Francesco Sciortino
    Proceedings of the National Academy of Sciences 2017 114 51
  • The glass transition in high-density amorphous ice
    Thomas Loerting, Violeta Fuentes-Landete, Philip H. Handle, Markus Seidl, Katrin Amann-Winkel, Catalin Gainaru, Roland Böhmer
    Journal of Non-Crystalline Solids 2015 407
  • Relaxation Time of High-Density Amorphous Ice
    Philip H. Handle, Markus Seidl, Thomas Loerting
    Physical Review Letters 2012 108 22
  • Glass polymorphism in glycerol–water mixtures: II. Experimental studies
    Johannes Bachler, Violeta Fuentes-Landete, David A. Jahn, Jessina Wong, Nicolas Giovambattista, Thomas Loerting
    Physical Chemistry Chemical Physics 2016 18 16
  • From parallel to single crystallization kinetics in high-density amorphous ice
    Markus Seidl, Katrin Amann-Winkel, Philip H. Handle, Gerhard Zifferer, Thomas Loerting
    Physical Review B 2013 88 17
  • Pressure-induced transformations in glassy water: A computer simulation study using the TIP4P/2005 model
    Jessina Wong, David A. Jahn, Nicolas Giovambattista
    The Journal of Chemical Physics 2015 143 7
  • Pressure-induced transformations in computer simulations of glassy water
    Janet Chiu, Francis W. Starr, Nicolas Giovambattista
    The Journal of Chemical Physics 2013 139 18
  • Evolution of Hydrogen Dynamics in Amorphous Ice with Density
    A. Parmentier, J. J. Shephard, G. Romanelli, R. Senesi, C. G. Salzmann, C. Andreani
    The Journal of Physical Chemistry Letters 2015 6 11
  • Shrinking water's no man's land by lifting its low-temperature boundary
    Markus Seidl, Alice Fayter, Josef N. Stern, Gerhard Zifferer, Thomas Loerting
    Physical Review B 2015 91 14
  • Glass polymorphism in glycerol–water mixtures: I. A computer simulation study
    David A. Jahn, Jessina Wong, Johannes Bachler, Thomas Loerting, Nicolas Giovambattista
    Physical Chemistry Chemical Physics 2016 18 16
  • Experimental evidence of low-density liquid water upon rapid decompression
    Chuanlong Lin, Jesse S. Smith, Stanislav V. Sinogeikin, Guoyin Shen
    Proceedings of the National Academy of Sciences 2018 115 9
  • Searching for crystal-ice domains in amorphous ices
    Fausto Martelli, Nicolas Giovambattista, Salvatore Torquato, Roberto Car
    Physical Review Materials 2018 2 7
  • Dynamics anomaly in high-density amorphous ice between 0.7 and 1.1 GPa
    Philip H. Handle, Thomas Loerting
    Physical Review B 2016 93 6
  • Thermodynamic Analysis of the Two-Liquid Model for Anomalies of Water, HDL–LDL Fluctuations, and Liquid–Liquid Transition
    G. P. Johari, J. Teixeira
    The Journal of Physical Chemistry B 2015 119 44
  • Comment on “Water’s second glass transition, K. Amann-Winkel, C. Gainaru, P. H. Handle, M. Seidl, H. Nelson, R. Böhmer, and T. Loerting, Proc. Natl. Acad. Sci. (U.S.) 110 (2013) 17720.”, and the sub-Tg features of pressure-densified glasses
    G.P. Johari
    Thermochimica Acta 2015 617
  • Glass and liquid phase diagram of a polyamorphic monatomic system
    Shaina Reisman, Nicolas Giovambattista
    The Journal of Chemical Physics 2013 138 6
  • Glass Transitions in Pressure-Collapsed Ice Clathrates and Implications for Cold Water
    Ove Andersson, Akira Inaba
    The Journal of Physical Chemistry Letters 2012 3 15
  • Limits of metastability in amorphous ices: the neutron scattering Debye–Waller factor
    Katrin Amann-Winkel, Florian Löw, Philip H. Handle, Wiebke Knoll, Judith Peters, Burkhard Geil, Franz Fujara, Thomas Loerting
    Physical Chemistry Chemical Physics 2012 14 47
  • Evidence for high-density liquid water between 0.1 and 0.3 GPa near 150 K
    Josef N. Stern, Markus Seidl-Nigsch, Thomas Loerting
    Proceedings of the National Academy of Sciences 2019 116 19
  • Liquid Polymorphism
    Frédéric Caupin, Abraham D. Stroock
    2013
  • Liquid-liquid phase transition in water
    ZhaoRu Sun, Gang Sun, YiXuan Chen, LiMei Xu
    Science China Physics, Mechanics & Astronomy 2014 57 5
  • Ultra-slow dynamics in low density amorphous ice revealed by deuteron NMR: indication of a glass transition
    Florian Löw, Katrin Amann-Winkel, Thomas Loerting, Franz Fujara, Burkhard Geil
    Physical Chemistry Chemical Physics 2013 15 23
  • Venture into Water’s No Man’s Land: Structural Transformations of Solid H2O under Rapid Compression and Decompression
    Chuanlong Lin, Jesse S. Smith, Xuqiang Liu, John S. Tse, Wenge Yang
    Physical Review Letters 2018 121 22
  • Heating- and pressure-induced transformations in amorphous and hexagonal ice: A computer simulation study using the TIP4P/2005 model
    Justin Engstler, Nicolas Giovambattista
    The Journal of Chemical Physics 2017 147 7
  • High-density amorphous ice: nucleation of nanosized low-density amorphous ice
    Christina M Tonauer, Markus Seidl-Nigsch, Thomas Loerting
    Journal of Physics: Condensed Matter 2018 30 3
  • Encyclopedia of Water
    Martin F. Chaplin
    2019
  • Glass-to-cryogenic-liquid transitions in aqueous solutions suggested by crack healing
    Chae Un Kim, Mark W. Tate, Sol M. Gruner
    Proceedings of the National Academy of Sciences 2015 112 38
  • Reversible pressure-induced crystal-amorphous structural transformation in ice Ih
    Niall J. English, John S. Tse
    Chemical Physics Letters 2014 609
  • Thermal conductivity of Glycerol’s liquid, glass, and crystal states, glass-liquid-glass transition, and crystallization at high pressures
    Ove Andersson, G. P. Johari
    The Journal of Chemical Physics 2016 144 6
  • Liquid Polymorphism
    Nicolas Giovambattista, Katrin Amann-Winkel, Thomas Loerting
    2013
  • X-ray studies of the transformation from high- to low-density amorphous water
    Daniel Mariedahl, Fivos Perakis, Alexander Späh, Harshad Pathak, Kyung Hwan Kim, Chris Benmore, Anders Nilsson, Katrin Amann-Winkel
    Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences 2019 377 2146
  • A Second Glass Transition in Pressure Collapsed Type II Clathrate Hydrates
    Ove Andersson, Ulrich Häussermann
    The Journal of Physical Chemistry B 2018 122 15
  • Comment on: “Relaxation time of high-density amorphous ice, by P. H. Handle, M. Seidl, T. Loerting; Phys. Rev. Lett. 108 (2012) 225901”. The α-relaxation time of strained state of high-density amorphous ice at T<T g , its T g , and its transformations
    G.P. Johari
    Thermochimica Acta 2014 589
  • Simulation of high-density water: Its glass transition for various water models
    Martin Jehser, Markus Seidl, Clemens Rauer, Thomas Loerting, Gerhard Zifferer
    The Journal of Chemical Physics 2014 140 13
  • Transitions in Pressure Collapsed Clathrate Hydrates
    Ove Andersson, Yasuhiro Nakazawa
    The Journal of Physical Chemistry B 2015 119 9
  • Pressure densified 1,3,5-tri(1-naphthyl)benzene glass. I. Volume recovery and physical aging
    A. P. Holt, D. Fragiadakis, C. M. Roland
    The Journal of Chemical Physics 2019 151 18
  • Elucidation of the pressure induced amorphization of tetrahydrofuran clathrate hydrate
    Paulo H. B. Brant Carvalho, Amber Mace, Craig L. Bull, Nicholas P. Funnell, Chris A. Tulk, Ove Andersson, Ulrich Häussermann
    The Journal of Chemical Physics 2019 150 20
  • Habitability of the Universe Before Earth
    Jeffrey M. Robinson, Jill A. Mikucki
    2018
  • In situ x-ray diffraction study of polyamorphism in H2O under isothermal compression and decompression
    Guoyin Shen, Jesse S. Smith, Curtis Kenney-Benson, Richard A. Ferry
    The Journal of Chemical Physics 2019 150 24
  • Nature of polyamorphic transformations in H2O under isothermal compression and decompression
    Guoyin Shen, Jesse S. Smith, Curtis Kenney-Benson
    Physical Review Materials 2019 3 7
  • Thermal conductivity of normal and deuterated water, crystalline ice, and amorphous ices
    Ove Andersson
    The Journal of Chemical Physics 2018 149 12
  • Transitions in pressure-amorphized clathrate hydrates akin to those of amorphous ices
    Ove Andersson, Paulo H. B. Brant Carvalho, Ying-Jui Hsu, Ulrich Häussermann
    The Journal of Chemical Physics 2019 151 1
  • Electron Beam-Induced Transformation in High-Density Amorphous Ices
    Hongyi Xu, Jonas Ångström, Tobias Eklund, Katrin Amann-Winkel
    The Journal of Physical Chemistry B 2020 124 41
  • Low Temperature Materials and Mechanisms
    Steve Vance, Thomas Loerting, Josef Stern, Matt Kropf, Baptiste Journaux, Corey Jamieson, Morgan L. Cable, Olivier Bollengier
    2016
  • Structural differences between unannealed and expanded high-density amorphous ice based on isotope substitution neutron diffraction
    Katrin Amann-Winkel, Daniel T. Bowron, Thomas Loerting
    Molecular Physics 2019 117 22

Article usage

Article usage: June 2011 to January 2021

AbstractFullPdf
Jun 2011952095
Jul 20115411134567
Aug 20114121046
Sep 20112731131
Oct 20112081831
Nov 2011161648
Dec 2011144337
Total 20117561182855
Jan 20121652551
Feb 2012911512
Mar 20121262026
Apr 2012741917
May 2012752015
Jun 2012611211
Jul 2012621815
Aug 2012601024
Sep 2012511126
Oct 201247168
Nov 2012612120
Dec 2012652120
Total 2012938208245
Jan 2013522317
Feb 2013611913
Mar 2013731724
Apr 2013761721
May 2013581221
Jun 2013491715
Jul 2013592217
Aug 2013341317
Sep 2013431719
Oct 2013382120
Nov 2013401225
Dec 2013412038
Total 2013624210247
Jan 2014411123
Feb 20144079
Mar 2014523324
Apr 2014771737
May 201440828
Jun 2014261020
Jul 2014411411
Aug 2014351610
Sep 201431136
Oct 201433175
Nov 2014292012
Dec 20142675
Total 2014471173190
Jan 201537611
Feb 201516167
Mar 201526127
Apr 201533209
May 201519811
Jun 20152579
Jul 201513911
Aug 201521814
Sep 2015211416
Oct 2015241417
Nov 2015211914
Dec 201522108
Total 2015278143134
Jan 2016231215
Feb 2016152020
Mar 2016141017
Apr 20162085
May 2016292913
Jun 201619247
Jul 2016241115
Aug 20161160
Sep 2016261610
Oct 2016331517
Nov 2016232228
Dec 2016221613
Total 2016259189160
Jan 2017172116
Feb 2017351916
Mar 2017172512
Apr 20172156
May 2017422816
Jun 2017233210
Jul 2017143013
Aug 2017194013
Sep 2017123912
Oct 201763210
Nov 2017152510
Dec 201711103
Total 2017232306137
Jan 201832216
Feb 201823274
Mar 201823298
Apr 2018313310
May 201831285
Jun 201845429
Jul 201840446
Aug 201832366
Sep 201835267
Oct 20188266
Nov 20188338
Dec 20185325
Total 201831337780
Jan 20193409
Feb 20192257
Mar 201943414
Apr 20193327
May 201902810
Jun 201912811
Jul 201913111
Aug 201913312
Sep 20193458
Oct 201964312
Nov 20192244
Dec 20193258
Total 201929388113
Jan 20203496
Feb 20203405
Mar 20200394
Apr 20202478
May 20201507
Jun 20201434
Jul 202034811
Aug 20203419
Sep 20201401
Oct 2020105610
Nov 202044110
Dec 202044511
Total 20203553986
Jan 20212263
Total 20212263
Total1074227412250
PreviousNext
Back to top
Article Alerts
Email Article

Thank you for your interest in spreading the word on PNAS.

NOTE: We only request your email address so that the person you are recommending the page to knows that you wanted them to see it, and that it is not junk mail. We do not capture any email address.

Enter multiple addresses on separate lines or separate them with commas.
Glass–liquid transition of water at high pressure
(Your Name) has sent you a message from PNAS
(Your Name) thought you would like to see the PNAS web site.
CAPTCHA
This question is for testing whether or not you are a human visitor and to prevent automated spam submissions.
Citation Tools
Glass–liquid transition of water at high pressure
Ove Andersson
Proceedings of the National Academy of Sciences Jul 2011, 108 (27) 11013-11016; DOI: 10.1073/pnas.1016520108

Citation Manager Formats

  • BibTeX
  • Bookends
  • EasyBib
  • EndNote (tagged)
  • EndNote 8 (xml)
  • Medlars
  • Mendeley
  • Papers
  • RefWorks Tagged
  • Ref Manager
  • RIS
  • Zotero
Request Permissions
Share
Glass–liquid transition of water at high pressure
Ove Andersson
Proceedings of the National Academy of Sciences Jul 2011, 108 (27) 11013-11016; DOI: 10.1073/pnas.1016520108
Digg logo Reddit logo Twitter logo Facebook logo Google logo Mendeley logo
  • Tweet Widget
  • Facebook Like
  • Mendeley logo Mendeley
Proceedings of the National Academy of Sciences: 108 (27)
Table of Contents

Submit

Sign up for Article Alerts

Article Classifications

  • Physical Sciences
  • Physics

Jump to section

  • Article
    • Abstract
    • Results and Discussion
    • Conclusions
    • Materials and Methods
    • Acknowledgments
    • Footnotes
    • References
  • Figures & SI
  • Info & Metrics
  • PDF

You May Also be Interested in

Abstract depiction of a guitar and musical note
Science & Culture: At the nexus of music and medicine, some see disease treatments
Although the evidence is still limited, a growing body of research suggests music may have beneficial effects for diseases such as Parkinson’s.
Image credit: Shutterstock/agsandrew.
Scientist looking at an electronic tablet
Opinion: Standardizing gene product nomenclature—a call to action
Biomedical communities and journals need to standardize nomenclature of gene products to enhance accuracy in scientific and public communication.
Image credit: Shutterstock/greenbutterfly.
One red and one yellow modeled protein structures
Journal Club: Study reveals evolutionary origins of fold-switching protein
Shapeshifting designs could have wide-ranging pharmaceutical and biomedical applications in coming years.
Image credit: Acacia Dishman/Medical College of Wisconsin.
White and blue bird
Hazards of ozone pollution to birds
Amanda Rodewald, Ivan Rudik, and Catherine Kling talk about the hazards of ozone pollution to birds.
Listen
Past PodcastsSubscribe
Goats standing in a pin
Transplantation of sperm-producing stem cells
CRISPR-Cas9 gene editing can improve the effectiveness of spermatogonial stem cell transplantation in mice and livestock, a study finds.
Image credit: Jon M. Oatley.

Similar Articles

Site Logo
Powered by HighWire
  • Submit Manuscript
  • Twitter
  • Facebook
  • RSS Feeds
  • Email Alerts

Articles

  • Current Issue
  • Latest Articles
  • Archive

PNAS Portals

  • Anthropology
  • Chemistry
  • Classics
  • Front Matter
  • Physics
  • Sustainability Science
  • Teaching Resources

Information

  • Authors
  • Editorial Board
  • Reviewers
  • Librarians
  • Press
  • Site Map
  • PNAS Updates

Feedback    Privacy/Legal

Copyright © 2021 National Academy of Sciences. Online ISSN 1091-6490