Surface energies of elemental crystals

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作者
Richard Tran
Zihan Xu
Balachandran Radhakrishnan
Donald Winston
Wenhao Sun
Kristin A. Persson
Shyue Ping Ong
机构
[1] University of California San Diego,Department of NanoEngineering
[2] Energy Technologies Area,Department of Materials Science and Engineering
[3] Lawrence Berkeley National Laboratory,Department of Materials Science & Engineering
[4] Massachusetts Institute of Technology,undefined
[5] University of California,undefined
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摘要
The surface energy is a fundamental property of the different facets of a crystal that is crucial to the understanding of various phenomena like surface segregation, roughening, catalytic activity, and the crystal’s equilibrium shape. Such surface phenomena are especially important at the nanoscale, where the large surface area to volume ratios lead to properties that are significantly different from the bulk. In this work, we present the largest database of calculated surface energies for elemental crystals to date. This database contains the surface energies of more than 100 polymorphs of about 70 elements, up to a maximum Miller index of two and three for non-cubic and cubic crystals, respectively. Well-known reconstruction schemes are also accounted for. The database is systematically improvable and has been rigorously validated against previous experimental and computational data where available. We will describe the methodology used in constructing the database, and how it can be accessed for further studies and design of materials.
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