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Igor A. Abrikosov

Igor A. Abrikosov

D-Index & Metrics

Materials Science

D-Index
85
Citations
25326
World Ranking
2168
National Ranking
16

Overview

Igor A. Abrikosov is affiliated with Linköping University in Sweden and has produced extensive research primarily in the fields of Materials Science and Engineering. Their work spans multiple subfields, including Materials Chemistry, Electrical and Electronic Engineering, Mechanics of Materials, Inorganic Chemistry, and Mechanical Engineering.

Their publications cover a range of topics centered on crystallization, solubility studies, and material properties investigated using advanced techniques such as X-ray diffraction. The main topics explored in their research include:

  • Crystallization and Solubility Studies
  • X-ray Diffraction in Crystallography
  • Metal and Thin Film Mechanics
  • Diamond and Carbon-based Materials Research
  • Boron and Carbon Nanomaterials Research
  • Inorganic Chemistry and Materials
  • MXene and MAX Phase Materials

Their frequent collaborators include:

  • Leonid Dubrovinsky (121 joint publications)
  • Natalia Dubrovinskaia (108 joint publications)
  • Vitali B. Prakapenka (99 joint publications)
  • Stella Chariton (92 joint publications)
  • Timofey Fedotenko (83 joint publications)

Abrikosov has contributed to multiple publication venues, with the highest number of works appearing in The Cambridge Structural Database. Other regular venues include arXiv (Cornell University), Physical Review B, Physical Review Materials, and Angewandte Chemie International Edition.

Selected recent papers exemplify the breadth of their research and publication output:

  • "Anharmonicity and Ultralow Thermal Conductivity in Lead-Free Halide Double Perovskites" (2020), Physical Review Letters
  • "High-Pressure Synthesis of Dirac Materials: Layered van der Waals Bonded BeN4 Polymorph" (2021), Physical Review Letters
  • "Bright and stable near-infrared lead-free perovskite light-emitting diodes" (2024), Nature Photonics
  • "Lead-Free Halide Double Perovskite Cs2AgBiBr6 with Decreased Band Gap" (2020), Angewandte Chemie International Edition
  • "Near-Infrared Light-Responsive Cu-Doped Cs2AgBiBr6" (2020), Advanced Functional Materials

The research trajectory of Igor A. Abrikosov reflects a focus on advanced material properties, particularly in halide double perovskites and novel inorganic compounds synthesized under specific conditions such as high pressure. Their work engages with topics relevant to both fundamental material chemistry and applied engineering challenges.

Best Publications

  • Quantum origin of the oxygen storage capability of ceria.

    N. V. Skorodumova;S. I. Simak;B. I. Lundqvist;I. A. Abrikosov

  • Lattice dynamics of anharmonic solids from first principles

    Olle Hellman;Igor Abrikosov;Sergei Simak

  • Anisotropic Lattice Distortions in Random Alloys from First-Principles Theory

    Levente Vitos;I. A. Abrikosov;Börje Johansson;Börje Johansson

  • Temperature dependent effective potential method for accurate free energy calculations of solids

    Olle Hellman;Peter Steneteg;Igor A. Abrikosov;Sergei I. Simak

  • Optimization of ionic conductivity in doped ceria

    David A. Andersson;Sergei I. Simak;Natalia V. Skorodumova;Igor A. Abrikosov

  • Origin of the anomalous piezoelectric response in wurtzite Sc(x)Al(1-x)N alloys.

    Ferenc Tasnádi;Björn Alling;Carina Höglund;Gunilla Wingqvist

  • Electronic, bonding, and optical properties of CeO 2 and Ce 2 O 3 from first principles

    N. V. Skorodumova;Rajeev Ahuja;S. I. Simak;I. A. Abrikosov

  • Modeling of CeO2, Ce2O3, and CeO2−x in the LDA+U formalism

    D. A. Andersson;S. I. Simak;Börje Johansson;Börje Johansson;I. A. Abrikosov

  • Phonon related properties of transition metals, their carbides, and nitrides: A first-principles study

    Eyvaz I. Isaev;S. I. Simak;I. A. Abrikosov;Rajeev Ahuja

  • Modeling ofCeO2,Ce2O3, andCeO2−xin theLDA+Uformalism

    D. A. Andersson;S. I. Simak;B. Johansson;I. A. Abrikosov

  • Ab initio formation energies of Fe-Cr alloys

    Pär Olsson;Igor A. Abrikosov;Levente Vitos;Janne Wallenius;Janne Wallenius

  • First-principles calculations of the vacancy formation energy in transition and noble metals

    P.A. Korzhavyi;Igor A. Abrikosov;Börje Johansson;Andrei Ruban

  • Order-N Green's function technique for local environment effects in alloys.

    I. A. Abrikosov;A. M. N. Niklasson;S. I. Simak;B. Johansson

  • Body-centered cubic iron-nickel alloy in Earth's core.

    L. Dubrovinsky;N. Dubrovinskaia;O. Narygina;I. Kantor

  • The most incompressible metal osmium at static pressures above 750 gigapascals

    Leonid Dubrovinsky;Natalia Dubrovinskaia;Elena Bykova;Maxim Bykov

  • Mixing and decomposition thermodynamics of c-Ti1-xAlxN from first-principles calculations

    Björn Alling;Björn Alling;A. V. Ruban;A. Karimi;O. E. Peil

  • Electronic origin of the anomalous stability of Fe-rich bcc Fe-Cr alloys

    Pär Olsson;I. A. Abrikosov;Janne Wallenius;Janne Wallenius

  • Electrically and mechanically tunable electron spins in silicon carbide color centers.

    Abram L. Falk;Abram L. Falk;Paul V. Klimov;Paul V. Klimov;Bob B. Buckley;Viktor Ivády;Viktor Ivády

  • Madelung energy for random metallic alloys in the coherent potential approximation.

    P. A. Korzhavyi;Andrei Ruban;I. A. Abrikosov;Hans Lomholt Skriver

  • Fe-N System at High Pressure Reveals a Compound Featuring Polymeric Nitrogen Chains

    Maxim Bykov;Elena Bykova;Georgios Aprilis;Konstantin Glazyrin

  • Self-consistent linear-muffin-tin-orbitals coherent-potential technique for bulk and surface calculations: Cu-Ni, Ag-Pd, and Au-Pt random alloys.

    I. A. Abrikosov;H. L. Skriver

  • Vanishing Magnetic Interaction in Ferromagnetic Thin Films

    Jonathan Hunter Dunn;Olof Karis;Cecilia Andersson;Dimitri Arvanitis

Frequent Co-Authors

Björn Alling
Björn Alling Linköping University
Leonid Dubrovinsky
Leonid Dubrovinsky University of Bayreuth
Adam Gali
Adam Gali Budapest University of Technology and Economics
Andrei V. Ruban
Andrei V. Ruban Royal Institute of Technology
Natalia Dubrovinskaia
Natalia Dubrovinskaia University of Bayreuth
Magnus Odén
Magnus Odén Linköping University
Lars Hultman
Lars Hultman Linköping University
Levente Vitos
Levente Vitos Royal Institute of Technology
Vitali B. Prakapenka
Vitali B. Prakapenka University of Chicago
Olle Eriksson
Olle Eriksson Uppsala University

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