Crystal structure prediction usingab initioevolutionary techniques: Principles and applications
We have developed an efficient and reliable methodology for crystal structure prediction, merging ab initio total-energy calculations and a specifically devised evolutionary algorithm. This method allows one to predict the most stable crystal structure and a number of low-energy metastable structures for a given compound at any P-T conditions without requiring any experimental input. Extremely high (nearly 100%) success rate has been observed in a few tens of tests done so far, including ionic, covalent, metallic, and molecular structures with up to 40 atoms in the unit cell. We have been able to resolve some important problems in high-pressure crystallography and report a number of new high-pressure crystal structures (stable phases: ε-oxygen, new phase of sulphur, new metastable phases of carbon, sulphur and nitrogen, stable and metastable phases of CaCO3). Physical reasons for the success of this methodology are discussed.
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Physical Review B
178 publications, 7.98%
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Physical Chemistry Chemical Physics
126 publications, 5.65%
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Journal of Physical Chemistry C
96 publications, 4.3%
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Journal of Chemical Physics
88 publications, 3.95%
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Scientific Reports
67 publications, 3%
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Computational Materials Science
56 publications, 2.51%
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Physical Review Materials
47 publications, 2.11%
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Physical Review Letters
43 publications, 1.93%
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Journal of Applied Physics
42 publications, 1.88%
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Journal of Physics Condensed Matter
38 publications, 1.7%
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RSC Advances
34 publications, 1.52%
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Journal of Physical Chemistry Letters
33 publications, 1.48%
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Chemistry of Materials
30 publications, 1.35%
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npj Computational Materials
30 publications, 1.35%
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Journal of Materials Chemistry A
28 publications, 1.26%
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Inorganic Chemistry
26 publications, 1.17%
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Journal of the American Chemical Society
25 publications, 1.12%
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Journal of Alloys and Compounds
23 publications, 1.03%
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Crystal Growth and Design
21 publications, 0.94%
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Chinese Physics B
21 publications, 0.94%
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Computer Physics Communications
18 publications, 0.81%
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Nanoscale
17 publications, 0.76%
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Angewandte Chemie - International Edition
17 publications, 0.76%
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Acta Materialia
17 publications, 0.76%
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Angewandte Chemie
17 publications, 0.76%
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Journal of Materials Chemistry C
17 publications, 0.76%
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Proceedings of the National Academy of Sciences of the United States of America
16 publications, 0.72%
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Nature Communications
16 publications, 0.72%
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Journal of Chemical Theory and Computation
16 publications, 0.72%
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Elsevier
362 publications, 16.23%
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American Chemical Society (ACS)
328 publications, 14.71%
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American Physical Society (APS)
286 publications, 12.83%
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Royal Society of Chemistry (RSC)
281 publications, 12.6%
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Springer Nature
239 publications, 10.72%
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AIP Publishing
172 publications, 7.71%
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Wiley
160 publications, 7.17%
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IOP Publishing
127 publications, 5.7%
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Pleiades Publishing
46 publications, 2.06%
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MDPI
42 publications, 1.88%
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Taylor & Francis
23 publications, 1.03%
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International Union of Crystallography (IUCr)
17 publications, 0.76%
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Proceedings of the National Academy of Sciences (PNAS)
16 publications, 0.72%
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American Association for the Advancement of Science (AAAS)
8 publications, 0.36%
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Oxford University Press
7 publications, 0.31%
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Acta Physica Sinica, Chinese Physical Society and Institute of Physics, Chinese Academy of Sciences
7 publications, 0.31%
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Japan Society of Applied Physics
6 publications, 0.27%
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Frontiers Media S.A.
5 publications, 0.22%
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Uspekhi Fizicheskikh Nauk Journal
4 publications, 0.18%
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World Scientific
4 publications, 0.18%
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Iron and Steel Institute of Japan
4 publications, 0.18%
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Physical Society of Japan
4 publications, 0.18%
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Cambridge University Press
4 publications, 0.18%
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Hindawi Limited
4 publications, 0.18%
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Annual Reviews
4 publications, 0.18%
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Institute of Electrical and Electronics Engineers (IEEE)
3 publications, 0.13%
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Walter de Gruyter
2 publications, 0.09%
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Japan Institute of Metals
2 publications, 0.09%
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Institute of Physics, Polish Academy of Sciences
2 publications, 0.09%
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- We do not take into account publications without a DOI.
- Statistics recalculated weekly.