Nanosecond formation of diamond and lonsdaleite by shock compression of graphite

Shock synthesis of diamond and even harder carbon polymorphs from graphite is of great interest for science and technology. Here, the authors present unprecedented in situmeasurements of the structural changes, showing ultrafast formation of diamond and, at higher pressures, evidence for a pure lons...

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Autores principales: D. Kraus, A. Ravasio, M. Gauthier, D. O. Gericke, J. Vorberger, S. Frydrych, J. Helfrich, L. B. Fletcher, G. Schaumann, B. Nagler, B. Barbrel, B. Bachmann, E. J. Gamboa, S. Göde, E. Granados, G. Gregori, H. J. Lee, P. Neumayer, W. Schumaker, T. Döppner, R. W. Falcone, S. H. Glenzer, M. Roth
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Lenguaje:EN
Publicado: Nature Portfolio 2016
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spelling oai:doaj.org-article:f75b5911625e4143b479f18b9bdc8d3c2021-12-02T14:39:32ZNanosecond formation of diamond and lonsdaleite by shock compression of graphite10.1038/ncomms109702041-1723https://doaj.org/article/f75b5911625e4143b479f18b9bdc8d3c2016-03-01T00:00:00Zhttps://doi.org/10.1038/ncomms10970https://doaj.org/toc/2041-1723Shock synthesis of diamond and even harder carbon polymorphs from graphite is of great interest for science and technology. Here, the authors present unprecedented in situmeasurements of the structural changes, showing ultrafast formation of diamond and, at higher pressures, evidence for a pure lonsdaleite structure.D. KrausA. RavasioM. GauthierD. O. GerickeJ. VorbergerS. FrydrychJ. HelfrichL. B. FletcherG. SchaumannB. NaglerB. BarbrelB. BachmannE. J. GamboaS. GödeE. GranadosG. GregoriH. J. LeeP. NeumayerW. SchumakerT. DöppnerR. W. FalconeS. H. GlenzerM. RothNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-6 (2016)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
D. Kraus
A. Ravasio
M. Gauthier
D. O. Gericke
J. Vorberger
S. Frydrych
J. Helfrich
L. B. Fletcher
G. Schaumann
B. Nagler
B. Barbrel
B. Bachmann
E. J. Gamboa
S. Göde
E. Granados
G. Gregori
H. J. Lee
P. Neumayer
W. Schumaker
T. Döppner
R. W. Falcone
S. H. Glenzer
M. Roth
Nanosecond formation of diamond and lonsdaleite by shock compression of graphite
description Shock synthesis of diamond and even harder carbon polymorphs from graphite is of great interest for science and technology. Here, the authors present unprecedented in situmeasurements of the structural changes, showing ultrafast formation of diamond and, at higher pressures, evidence for a pure lonsdaleite structure.
format article
author D. Kraus
A. Ravasio
M. Gauthier
D. O. Gericke
J. Vorberger
S. Frydrych
J. Helfrich
L. B. Fletcher
G. Schaumann
B. Nagler
B. Barbrel
B. Bachmann
E. J. Gamboa
S. Göde
E. Granados
G. Gregori
H. J. Lee
P. Neumayer
W. Schumaker
T. Döppner
R. W. Falcone
S. H. Glenzer
M. Roth
author_facet D. Kraus
A. Ravasio
M. Gauthier
D. O. Gericke
J. Vorberger
S. Frydrych
J. Helfrich
L. B. Fletcher
G. Schaumann
B. Nagler
B. Barbrel
B. Bachmann
E. J. Gamboa
S. Göde
E. Granados
G. Gregori
H. J. Lee
P. Neumayer
W. Schumaker
T. Döppner
R. W. Falcone
S. H. Glenzer
M. Roth
author_sort D. Kraus
title Nanosecond formation of diamond and lonsdaleite by shock compression of graphite
title_short Nanosecond formation of diamond and lonsdaleite by shock compression of graphite
title_full Nanosecond formation of diamond and lonsdaleite by shock compression of graphite
title_fullStr Nanosecond formation of diamond and lonsdaleite by shock compression of graphite
title_full_unstemmed Nanosecond formation of diamond and lonsdaleite by shock compression of graphite
title_sort nanosecond formation of diamond and lonsdaleite by shock compression of graphite
publisher Nature Portfolio
publishDate 2016
url https://doaj.org/article/f75b5911625e4143b479f18b9bdc8d3c
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