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D-Index & Metrics

Chemistry

D-Index
58
Citations
11164
World Ranking
10694
National Ranking
2950

Overview

A. D. J. Haymet is affiliated with the University of Houston in the United States. Their research spans multiple fields, primarily focusing on Biochemistry, Genetics and Molecular Biology, and Earth and Planetary Sciences.

Their work is concentrated in several key subfields including Molecular Biology, Atmospheric Science, Ecology, and Plant Science. These subfields align with Haymet's research topics which include physiological and biochemical adaptations, lipid membrane structure and behavior, protein structure and dynamics, plant responses to elevated CO2, atmospheric chemistry and aerosols, and atmospheric ozone and climate.

Haymet has recently contributed to two publications. The first is titled "Molecular dynamics simulations of an antifreeze protein at the lipid / water interface," published in 2023 in the Journal of Molecular Liquids. The second paper, also from 2023, is titled "How should a small country respond to climate change?" and appeared in Condensed Matter Physics.

Frequent co-authors provide insight into collaboration patterns, with E. J. Smith being a noted collaborator.

Haymet's publications have appeared in the following venues:

  • Journal of Molecular Liquids
  • Condensed Matter Physics

The range of topics covered in their research includes:

  • Physiological and biochemical adaptations
  • Lipid Membrane Structure and Behavior
  • Protein Structure and Dynamics
  • Plant responses to elevated CO2
  • Atmospheric chemistry and aerosols
  • Atmospheric Ozone and Climate

Overall, A. D. J. Haymet's research integrates molecular-level biological processes with broader atmospheric and ecological contexts, addressing questions relevant to both molecular biology and planetary sciences.

Best Publications

  • A View of the Hydrophobic Effect

    Noel T. Southall;Ken A. Dill;A. D. J. Haymet

  • A molecular theory for the solid–liquid interface

    A. D. J. Haymet;David W. Oxtoby

  • A Simple Model of Water and the Hydrophobic Effect

    Kevin A. T. Silverstein;A. D. J. Haymet;Ken A. Dill

  • 'Antifreeze' glycoproteins from polar fish.

    Margaret M. Harding;Pia I. Anderberg;A. D. J. Haymet

  • Free energy, entropy, and internal energy of hydrophobic interactions: Computer simulations

    David E. Smith;A. D. J. Haymet

  • The ice/water interface: A molecular dynamics simulation study

    Omar A. Karim;A. D. J. Haymet

  • C120 and C60: Archimedean solids constructed from sp2 hybridized carbon atoms

    A.D.J. Haymet

  • Type I 'antifreeze' proteins. Structure-activity studies and mechanisms of ice growth inhibition.

    Margaret M. Harding;Leanne G. Ward;A. D. J. Haymet

  • Winter Flounder "Antifreeze" Proteins: Synthesis and Ice Growth Inhibition of Analogs that Probe the Relative Importance of Hydrophobic and Hydrogen-Bonding Interactions

    A. D. J. Haymet;Leanne G. Ward;Margaret M. Harding

  • A molecular theory of the solid–liquid interface. II. Study of bcc crystal–melt interfaces

    David W. Oxtoby;A. D. J. Haymet

  • Valine substituted winter flounder 'antifreeze': preservation of ice growth hysteresis.

    A.D.J Haymet;Leanne G Ward;Margaret M Harding;Charles A Knight

  • Ice nucleation in nature: supercooling point (SCP) measurements and the role of heterogeneous nucleation.

    P.W Wilson;A.F Heneghan;A.D.J Haymet

  • Footballene: a theoretical prediction for the stable, truncated icosahedral molecule C60

    A. D. J. Haymet

  • The Strength of Hydrogen Bonds in Liquid Water and Around Nonpolar Solutes

    Kevin A. T. Silverstein;A. D. J. Haymet;Ken A. Dill

  • Entropy of association of methane in water : a new molecular dynamics computer simulation

    David E. Smith;Ling Zhang;A. D. J. Haymet

  • Molecular model of hydrophobic solvation

    Kevin A. T. Silverstein;A. D. J. Haymet;Ken A. Dill

  • Heterogeneous nucleation of supercooled water, and the effect of an added catalyst

    A. F. Heneghan;P. W. Wilson;A. D. J. Haymet

  • Ab initio quantum chemistry study of formamide-formamidic acid tautomerization

    Xiao Chuan Wang;Jeff Nichols;Martin Feyereisen;Maciej Gutowski

  • The ice/water interface: Molecular dynamics simulations of the basal, prism, {202̄1}, and {21̄1̄0} interfaces of ice Ih

    Jennifer A. Hayward;A. D. J. Haymet

  • The crystal/liquid interface: structure and properties from computer simulation

    Brian B. Laird;A. D. J. Haymet

  • Integral equation theory for uncharged liquids: The Lennard‐Jones fluid and the bridge function

    Unknown

  • THEORY OF THE EQUILIBRIUM LIQUID-SOLID TRANSITION

    Unknown

Frequent Co-Authors

David W. Oxtoby
David W. Oxtoby University of Chicago
Ken A. Dill
Ken A. Dill Stony Brook University
Stuart A. Rice
Stuart A. Rice University of Chicago
David Smith
David Smith University of Oxford
John D. Simon
John D. Simon Duke University
Jeffry D. Madura
Jeffry D. Madura Duquesne University
Maciej Gutowski
Maciej Gutowski Heriot-Watt University
Jack Simons
Jack Simons University of Utah
Joel P. Mackay
Joel P. Mackay University of Sydney
David Chandler
David Chandler University of California, Berkeley

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