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Materials Science

D-Index
53
Citations
9060
World Ranking
9302
National Ranking
375

Overview

Peter D. Battle is affiliated with the University of Oxford in the United Kingdom. Their research focuses primarily on materials science and physics, with specific contributions in the subfields of electronic, optical, and magnetic materials as well as condensed matter physics.

The main topics explored by Battle include magnetic and transport properties of perovskites and related materials, advanced condensed matter physics, and multiferroics and related materials. These themes form the core of their research work and publication record.

The scientist has published several papers in the Journal of Solid State Chemistry, making it their most frequent publication venue. Notable recent papers include:

  • Structural and magnetic properties of the perovskites A2LaFe2SbO9 (A = Ca, Sr, Ba), 2020, Journal of Solid State Chemistry
  • CaLa2FeCoSbO9 and ALa2FeNiSbO9 (A = Ca, Sr, Ba): cation-ordered, inhomogeneous, ferrimagnetic perovskites, 2020, Journal of Solid State Chemistry
  • Composition-dependent transition from spin glass to ferrimagnet in CaLa2Ni2-Cu WO9 (0 ≤ x ≤ 0.5), 2020, Journal of Solid State Chemistry

Frequent collaborators in their research include Emily C. Hunter, Mylène Hendrickx, Yawei Tang, Joke Hadermann, and J. M. Cadogan. These coauthors have contributed to multiple studies alongside Battle, reflecting ongoing partnerships within the field.

Their work consistently addresses complex magnetic behaviors and structural properties in perovskite materials, contributing to a deeper understanding of condensed matter systems and functional materials relevant to modern physics and materials science.

Best Publications

  • The prediction of inorganic crystal structures using a genetic algorithm and energy minimisation

    Scott M. Woodley;Peter D. Battle;Julian D. Gale;C Richard A. Catlow

  • Self-consistent interatomic potentials for the simulation of binary and ternary oxides

    Timothy S. Bush;Julian D. Gale;C. Richard A. Catlow;Peter D. Battle

  • A study of carbon deposition on catalysts during the partial oxidation of methane to synthesis gas

    John B. Claridge;Malcolm L. H. Green;Shik Chi Tsang;Andrew P. E. York

  • The structure of SrRuO3 by time-of-flight neutron powder diffraction

    C. W. Jones;P. D. Battle;P. Lightfoot;W. T. A. Harrison

  • The structural properties of the oxygen conducting δ phase of Bi2O3

    P D Battle;C R A Catlow;J Drennan;A D Murray

  • The structural consequences of charge disproportionation in mixed-valence iron oxides. I. The crystal structure of Sr2LaFe3O8.94 at room temperature and 50 K

    P.D. Battle;T.C. Gibb;P. Lightfoot

  • The crystal and magnetic structures of Sr2YRuO6

    P.D. Battle;W.J. Macklin

  • Evolutionary programming techniques for predicting inorganic crystal structures

    T. S. Bush;C. R. A. Catlow;P. D. Battle

  • The crystal structures and magnetic properties of Ba2LaRuO6 and Ca2LaRuO6

    P. D. Battle;John B Goodenough;R. Price

  • The crystal and magnetic structures of Sr2LuRuO6, Ba2YRuO6, and Ba2LuRuO6

    Unknown

  • Layered Ruddlesden−Popper Manganese Oxides: Synthesis and Cation Ordering

    P. D. Battle;M. A. Green;N. S. Laskey;J. E. Millburn

  • The structural and magnetic properties of SrMnO3: A reinvestigation

    Unknown

  • Crystal and Magnetic Structures of 2H BaMnO3

    EJ Cussen;PD Battle

  • Spin-glass behavior in Sr2FeRuO6 and BaLaNiRuO6: A comparison with antiferromagnetic BaLaZnRuO6

    Unknown

  • Structural and dynamical studies of δ-Bi2O3 oxide ion conductors: I. The structure of (Bi2O3)1−x(Y2O3)x as a function of x and temperature

    P.D. Battle;C.R.A. Catlow;J.W. Heap;L.M. Moroney

  • The magnetic properties of iridium in mixed-metal oxides

    A.V. Powell;J.G. Gore;P.D. Battle

  • Investigation of magnetic frustration in A2FeMO6(A Ca, Sr, Ba; M Nb, Ta, Sb) by magnetometry and Mössbauer spectroscopy

    Peter D. Battle;Terence C. Gibb;Andrew J. Herod;Sang-Hyun Kim

  • The crystal and magnetic structures of Ba3NiRu2O9, Ba3CoRu2O9, and Ba3ZnRu2O9

    P. Lightfoot;P.D. Battle

  • Crystal and magnetic structures of the colossal magnetoresistance manganates Sr2-xNd1+xMn2O7 (x=0.0, 0.1).

    PD Battle;MA Green;NS Laskey;JE Millburn

  • A neutron diffraction study of the ferrimagnetic spinel NiCo2O4

    P. D. Battle;A. K. Cheetham;John B Goodenough

  • Neutron diffraction study of the influence of structural disorderon the magnetic properties of Sr2FeMO6 (M=Ta,Sb)

    Edmund J. Cussen;Jaap F. Vente;Peter D. Battle;Terence C. Gibb

  • Colossal magnetoresistance in ( x = 0.0, 0.1)

    P D Battle;S J Blundell;M A Green;W Hayes

  • The magnetic structure of non-stoichiometric ferrous oxide

    Unknown

  • Structural and dynamical studies of δ-Bi2O3 oxide-ion conductors: II. A structural comparison of (Bi2O3)1−x(M2O3)x for M = Y, Er, and Yb

    P.D. Battle;C.R.A. Catlow;L.M. Moroney

  • A study of anhydrous iron(III) sulfate by magnetic susceptibility, Moessbauer, and neutron diffraction techniques

    Gary J. Long;Geoffrey Longworth;Peter Battle;Anthony K. Cheetham

Frequent Co-Authors

Matthew J. Rosseinsky
Matthew J. Rosseinsky University of Liverpool
Jeremy Sloan
Jeremy Sloan University of Warwick
Maxim Avdeev
Maxim Avdeev Australian Nuclear Science and Technology Organisation
Gary J. Long
Gary J. Long Missouri University of Science and Technology
Fernande Grandjean
Fernande Grandjean Missouri University of Science and Technology
Mark A. Green
Mark A. Green University of Kent
Joke Hadermann
Joke Hadermann University of Antwerp
Clare P. Grey
Clare P. Grey University of Cambridge
Anthony K. Cheetham
Anthony K. Cheetham University of Cambridge
Paolo G. Radaelli
Paolo G. Radaelli University of Oxford

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