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Earth Science

D-Index
60
Citations
12512
World Ranking
1906
National Ranking
832

Overview

David Walker is affiliated with the Lamont-Doherty Earth Observatory in the United States. Their research primarily spans Materials Science and Physics and Astronomy, with a focus on subfields such as Materials Chemistry, Electronic, Optical and Magnetic Materials, Condensed Matter Physics, Immunology, and Geophysics.

Their work covers a range of scientific topics, including:

  • Advanced Condensed Matter Physics
  • Magnetic and transport properties of perovskites and related materials
  • Crystallization and Solubility Studies
  • X-ray Diffraction in Crystallography
  • Multiferroics and related materials
  • Physics of Superconductivity and Magnetism
  • Photopolymerization techniques and applications

David Walker has published extensively in several academic venues, contributing to:

  • The Cambridge Structural Database (9 publications)
  • Chemistry of Materials (6 publications)
  • Inorganic Chemistry (5 publications)
  • Additive Manufacturing (2 publications)
  • Journal of the American Chemical Society (2 publications)

Frequent collaborators in their research include M. Greenblatt, Corey E. Frank, Mark Croft, Zheng Deng, and Man-Rong Li.

Their recent published works include:

  • Results of an interlaboratory study on the working curve in vat photopolymerization, 2024, Additive Manufacturing
  • High-Pressure Synthesis of Double Perovskite Ba2NiIrO6: In Search of a Ferromagnetic Insulator, 2020, Inorganic Chemistry
  • A Polar Magnetic and Insulating Double Corundum Oxide: Mn2MnSbO6 with Ordered Mn(II) and Mn(III) Ions, 2021, Chemistry of Materials
  • Electrochemical Polymer Pen Lithography, 2021, Small
  • High-Pressure, High-Temperature Synthesis and Characterization of Polar and Magnetic LuCrWO6, 2020, Inorganic Chemistry

Best Publications

  • Abyssal tholeiites from the Oceanographer Fracture Zone. II - Phase equilibria and mixing

    David Walker;Tsugio Shibata;Stephen E. DeLong

  • Thermobarometry of mafic igneous rocks based on clinopyroxene-liquid equilibria, 0–30 kbar

    Keith Putirka;Marie Johnson;Rosamond Kinzler;John Longhi

  • Some simplifications to multianvil devices for high pressure experiments

    D. Walker;M. A. Carpenter;C. M. Hitch

  • Melt segregation from partially molten source regions: The importance of melt density and source region size

    Edward Stolper;David Walker;Bradford H. Hager;James F. Hays

  • Melt density and the average composition of basalt

    Edward Stolper;David Walker;David Walker

  • Lubrication, gasketing, and precision in multianvil experiments

    David Walker

  • Abyssal tholeiites from the Oceanographer Fracture Zone

    Tsugio Shibata;Stephen E. DeLong;David Walker

  • Melting in the Fe–C system to 70 GPa

    Oliver T Lord;Michael J Walter;R Dasgupta;R Dasgupta;D Walker

  • Crystallization history of lunar picritic basalt sample 12002 - Phase-equilibria and cooling-rate studies

    D. Walker;R. J. Kirkpatrick;J. Longhi;J. F. Hays

  • Experimental petrology of alkalic lavas: constraints on cotectics of multiple saturation in natural basic liquids

    Richard O. Sack;David Walker;Ian S. E. Carmichael

  • The distribution of Fe and Mg between olivine and lunar basaltic liquids

    John Longhi;David Walker;James F. Hays

  • Diffusive crystal dissolution

    Youxue Zhang;David Walker;Charles E. Lesher

  • Anticrack-associated faulting at very high pressure in natural olivine

    Harry W. Green;Thomas E. Young;David Walker;Christopher H. Scholz

  • Static compression and olivine flotation in ultrabasic silicate liquid

    Carl B. Agee;David Walker

  • Olivine flotation in mantle melt

    Carl B. Agee;David Walker

  • Carbon solution and partitioning between metallic and silicate melts in a shallow magma ocean: Implications for the origin and distribution of terrestrial carbon

    Rajdeep Dasgupta;Han Chi;Nobumichi Shimizu;Antonio S. Buono

  • Cumulate maturation and melt migration in a temperature gradient

    C. E. Lesher;D. Walker

  • High-pressure melting relations in Fe-C-S systems: Implications for formation, evolution, and structure of metallic cores in planetary bodies

    Rajdeep Dasgupta;Rajdeep Dasgupta;Antonio Buono;Geoff Whelan;David Walker

  • Komatiites and the structure of the Archaean mantle

    Euan G. Nisbet;David Walker

  • Mass balance and phase density constraints on early differentiation of chondritic mantle

    Carl B. Agee;David Walker

  • Basaltic volcanism on the terrestrial planets.

    W. M. Kaula;J. W. Head;R. B. Merrill;R. O. Pepin

Frequent Co-Authors

Simon M. Clark
Simon M. Clark Macquarie University
Mark Croft
Mark Croft Rutgers, The State University of New Jersey
Martha Greenblatt
Martha Greenblatt Rutgers, The State University of New Jersey
Edward M. Stolper
Edward M. Stolper California Institute of Technology
Peter W. Stephens
Peter W. Stephens Stony Brook University
Joke Hadermann
Joke Hadermann University of Antwerp
Changqing Jin
Changqing Jin Chinese Academy of Sciences
Michael J. Walter
Michael J. Walter Carnegie Institution for Science
Venkatraman Gopalan
Venkatraman Gopalan Pennsylvania State University

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