Semantic Scholar Open Access 2016 767 sitasi

The thermodynamic scale of inorganic crystalline metastability

Wenhao Sun S. Dacek S. Ong G. Hautier Anubhav Jain +4 lainnya

Abstrak

Data-mining the stability of 29,902 material phases reveals the thermodynamic landscape of inorganic crystalline metastability. The space of metastable materials offers promising new design opportunities for next-generation technological materials, such as complex oxides, semiconductors, pharmaceuticals, steels, and beyond. Although metastable phases are ubiquitous in both nature and technology, only a heuristic understanding of their underlying thermodynamics exists. We report a large-scale data-mining study of the Materials Project, a high-throughput database of density functional theory–calculated energetics of Inorganic Crystal Structure Database structures, to explicitly quantify the thermodynamic scale of metastability for 29,902 observed inorganic crystalline phases. We reveal the influence of chemistry and composition on the accessible thermodynamic range of crystalline metastability for polymorphic and phase-separating compounds, yielding new physical insights that can guide the design of novel metastable materials. We further assert that not all low-energy metastable compounds can necessarily be synthesized, and propose a principle of ‘remnant metastability’—that observable metastable crystalline phases are generally remnants of thermodynamic conditions where they were once the lowest free-energy phase.

Penulis (9)

W

Wenhao Sun

S

S. Dacek

S

S. Ong

G

G. Hautier

A

Anubhav Jain

W

W. Richards

A

A. Gamst

K

K. Persson

G

G. Ceder

Format Sitasi

Sun, W., Dacek, S., Ong, S., Hautier, G., Jain, A., Richards, W. et al. (2016). The thermodynamic scale of inorganic crystalline metastability. https://doi.org/10.1126/sciadv.1600225

Akses Cepat

Lihat di Sumber doi.org/10.1126/sciadv.1600225
Informasi Jurnal
Tahun Terbit
2016
Bahasa
en
Total Sitasi
767×
Sumber Database
Semantic Scholar
DOI
10.1126/sciadv.1600225
Akses
Open Access ✓