4.7 Article

Mechanism for direct graphite-to-diamond phase transition

相关参考文献

注意:仅列出部分参考文献,下载原文获取全部文献信息。
Article Chemistry, Physical

Molecular Dynamics Simulations of Shock Compressed Graphite

Nicolas Pineau

JOURNAL OF PHYSICAL CHEMISTRY C (2013)

Article Chemistry, Physical

Communication: From graphite to diamond: Reaction pathways of the phase transition

Penghao Xiao et al.

JOURNAL OF CHEMICAL PHYSICS (2012)

Article Multidisciplinary Sciences

Understanding the nature of superhard graphite

Salah Eddine Boulfelfel et al.

SCIENTIFIC REPORTS (2012)

Article Chemistry, Physical

Nucleation mechanism for the direct graphite-to-diamond phase transition

Rustam Z. Khaliullin et al.

NATURE MATERIALS (2011)

Article Materials Science, Multidisciplinary

Mechanism for direct conversion of graphite to diamond

Jian-Tao Wang et al.

PHYSICAL REVIEW B (2011)

Article Materials Science, Multidisciplinary

Theory and hierarchical calculations of the structure and energetics of [0001] tilt grain boundaries in graphene

Johan M. Carlsson et al.

PHYSICAL REVIEW B (2011)

Article Physics, Multidisciplinary

Low-Temperature Phase Transformation from Graphite to sp3 Orthorhombic Carbon

Jian-Tao Wang et al.

PHYSICAL REVIEW LETTERS (2011)

Article Chemistry, Physical

Phonons of graphene and graphitic materials derived from the empirical potential LCBOPII

L. J. Karssemeijer et al.

SURFACE SCIENCE (2011)

Article Materials Science, Multidisciplinary

Graphite-diamond phase coexistence study employing a neural-network mapping of the ab initio potential energy surface

Rustam Z. Khaliullin et al.

PHYSICAL REVIEW B (2010)

Article Materials Science, Multidisciplinary

Formation of multiwall fullerenes from nanodiamonds studied by atomistic simulations

Jan H. Los et al.

PHYSICAL REVIEW B (2009)

Article Chemistry, Physical

Ultrafast transformation of graphite to diamond: An ab initio study of graphite under shock compression

Christopher J. Mundy et al.

JOURNAL OF CHEMICAL PHYSICS (2008)

Article Physics, Multidisciplinary

Structural, electronic, and chemical properties of nanoporous carbon

JM Carlsson et al.

PHYSICAL REVIEW LETTERS (2006)

Article Materials Science, Multidisciplinary

Improved long-range reactive bond-order potential for carbon. I. Construction

JH Los et al.

PHYSICAL REVIEW B (2005)

Article Materials Science, Multidisciplinary

Microstructure features of polycrystalline diamond synthesized directly from graphite under static high pressure

H Sumiya et al.

JOURNAL OF MATERIALS SCIENCE (2004)

Article Multidisciplinary Sciences

Bonding changes in compressed superhard graphite

WL Mao et al.

SCIENCE (2003)

Article Multidisciplinary Sciences

Materials - Ultrahard polycrystalline diamond from graphite

T Irifune et al.

NATURE (2003)

Article Multidisciplinary Sciences

The mechanism of diamond nucleation from energetic species

Y Lifshitz et al.

SCIENCE (2002)