We describe recent efforts to improve our predictive modeling of rate-dependent behavior at, or near, a phase transition using molecular dynamics simulations. Cadmium sulfide (CdS) is a well-studied material that undergoes a solid-solid phase transition from wurtzite to rock salt structures between 3 and 9 GPa. Atomistic simulations are used to investigate the dominant transition mechanisms as a function of orientation, size and rate. We found that the final rock salt orientations were determined relative to the initial wurtzite orientation, and that these orientations were different for the two orientations and two pressure regimes studied. The CdS solid-solid phase transition is studied, for both a bulk single crystal and for polymer-encapsulated spherical nanoparticles of various sizes.

1.
C.-C.
Chen
,
A. B.
Herhold
,
C. S.
Johnson
, and
A. P.
Alivisatos
,
Science
276
,
398
401
(
1997
).
2.
S. H.
Tolbert
and
A.
Alivisatos
,
J. Chem. Phys.
102
,
4642
4656
(
1995
).
3.
P.
Rigg
,
C.
Greeff
,
M.
Knudson
,
G. Gray
III
, and
R.
Hixson
,
J. Appl. Phys.
106
,
123532
(
2009
).
4.
Y.
Vohra
,
S.
Sikka
,
S.
Vaidya
, and
R.
Chidambaram
,
J. Phys. Chem. Solids
38
,
1293
1296
(
1977
).
5.
R. G.
Hennig
,
D. R.
Trinkle
,
J.
Bouchet
,
S. G.
Srinivasan
,
R. C.
Albers
, and
J. W.
Wilkins
,
Nature Materials
4
,
129
(
2005
).
6.
B. J.
Jensen
,
G. Gray
III
, and
R. S.
Hixson
,
J. Appl. Phys.
105
,
103502
(
2009
).
7.
Y.
Ivanisenko
,
A.
Kilmametov
,
H.
Rösner
, and
R. Z.
Valiev
,
Intern. J. Materials Research
99
,
36
41
(
2008
).
8.
B.
Li
,
K.
Bian
,
J. M. D.
Lane
,
K. M.
Salerno
,
G. S.
Grest
,
T.
Ao
,
R.
Hickman
,
J.
Wise
,
Z.
Wang
, and
H.
Fan
,
Nature Comm.
8
,
14778
(
2017
).
9.
F.
Bai
,
K.
Bian
,
X.
Huang
,
Z.
Wang
, and
H.
Fan
,
Chem. Reviews
119
,
7673
7717
(
2019
).
10.
J. M. D.
Lane
,
K. M.
Salerno
,
I.
Srivastava
,
G. S.
Grest
, and
H.
Fan
,
AIP Conf. Proc.
1979
,
090007
(
2018
).
12.
J.
Tan
,
Y.
Li
, and
G.
Ji
,
Acta Physica Polonica A
120
,
501
506
(
2011
).
13.
M.
Knudson
,
Y.
Gupta
, and
A.
Kunz
,
Phys. Rev. B
59
,
11704
(
1999
).
14.
M.
Knudson
and
Y.
Gupta
,
Phys. Rev. Lett.
81
,
2938
(
1998
).
15.
M.
Knudson
and
Y.
Gupta
,
J. Appl. Phys.
91
,
9561
9571
(
2002
).
16.
M.
Grünwald
,
A.
Zayak
,
J. B.
Neaton
,
P. L.
Geissler
, and
E.
Rabani
,
J. Chem Phys.
136
,
234111
(
2012
).
17.
W. L.
Jorgensen
,
D. S.
Maxwell
, and
J.
Tirado-Rives
,
J. Amer. Chem. Soc.
118
,
11225
11236
(
1996
).
18.
E. K.
Watkins
and
W. L.
Jorgensen
,
J. Phys, Chem. A
105
,
4118
4125
(
2001
).
19.
S.
Plimpton
,
J. Comput. Phys.
117
,
1
19
(
1995
).
20.
R.
Ravelo
,
B.
Holian
,
T.
Germann
, and
P.
Lomdahl
,
Phys. Rev. B
70
,
014103
(
2004
).
21.
K.-H.
Hellwege
and
O. M.
Landolt-Börnstein
, eds.,
Physics of Group IV Elements and III-V Compounds
, Vol.
17
(
1982
).
22.
K.-H.
Hellwege
and
O. M.
Landolt-Börnstein
, eds.,
Physics of Group IV Elements and III-V Compounds
, Vol.
22
(
1982
).
This content is only available via PDF.