A tiny charge‐scaling in the OPLS‐AA + L‐OPLS force field delivers the realistic dynamics and structure of liquid primary alcohols

Author(s):  
Xuan Zhang ◽  
Yongtao Wang ◽  
Jia Yao ◽  
Haoran Li ◽  
Kenji Mochizuki
1997 ◽  
Vol 90 (3) ◽  
pp. 495-497
Author(s):  
CLAUDIO ESPOSTI ◽  
FILIPPO TAMASSIA ◽  
CRISTINA PUZZARINI ◽  
RICCARDO TARRONI ◽  
ZDENEK ZELINGER

1976 ◽  
Vol 73 ◽  
pp. 1051-1057
Author(s):  
Sadao Isotani ◽  
Alain J.-P. Alix

1985 ◽  
Vol 46 (C9) ◽  
pp. C9-107-C9-111
Author(s):  
J. F. Jal ◽  
J. Dupuy ◽  
A. Sadoc
Keyword(s):  

1987 ◽  
Vol 152 (8) ◽  
pp. 691
Author(s):  
B.I. Ostrovskii

2019 ◽  
Vol 2019 (1) ◽  
pp. 29-39
Author(s):  
A.E. Marchenko ◽  
◽  
V.V. Trachevsky ◽  
N.V. Skorina ◽  
◽  
...  

2020 ◽  
Author(s):  
Clément Dulong ◽  
Bruno Madebène ◽  
Susanna Monti ◽  
Johannes Richardi

<div><div><div><p>A new reactive force field based on the ReaxFF formalism is effectively parametrized against an extended training set of quantum chemistry data (containing more than 120 different structures) to describe accurately silver- and silver-thiolate systems. The results obtained with this novel representation demonstrate that the novel ReaxFF paradigm is a powerful methodology to reproduce more appropriately average geometric and energetic properties of metal clusters and slabs when compared to the earlier ReaxFF parametrizations dealing with silver and gold. ReaxFF cannot describe adequately specific geometrical features such as the observed shorter distances between the under-coordinated atoms at the cluster edges. Geometric and energetic properties of thiolates adsorbed on a silver Ag20 pyramid are correctly represented by the new ReaxFF and compared with results for gold. The simulation of self-assembled monolayers of thiolates on a silver (111) surface does not indicate the formation of staples in contrast to the results for gold-thiolate systems.</p></div></div></div>


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