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Integrated Reaction Path Processing from Sampled Structure Sequences

delete2018-03-08
delete13
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OA
AI
M
Michael A. Heuer
A
Alain C. Vaucher
M
Moritz P. Haag
M
Markus Reiher *
DOI:10.1021/acs.jctc.8b00019delete
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摘要

摘要

En 中文
Sampled structure sequences obtained, for instance, from real-time reactivity explorations or first-principles molecular dynamics simulations contain valuable information about chemical reactivity. Eventually, such sequences allow for the construction of reaction networks that are required for the kinetic analysis of chemical systems. For this purpose, however, the sampled information must be processed to obtain stable chemical structures and associated transition states. The manual extraction of valuable information from such reaction paths is straightforward but unfeasible for large and complex reaction networks. For real-time quantum chemistry, this implies automatization of the extraction and relaxation process while maintaining immersion in the virtual chemical environment. Here, we describe an efficient path processing scheme for the on-the-fly construction of an exploration network by approximating the explored paths as continuous basis-spline curves.
Keyword:
ELASTIC BAND METHOD
AUTOMATED DISCOVERY
REACTION-MECHANISMS
SADDLE-POINTS
SPLINES
CHEMISTRY
OPTIMIZATION
EXPLORATION
EFFICIENT
KINETICS
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期刊

Journal of Chemical Theory and Computation 封面图
Journal of Chemical Theory and Computation
IF:
5.5
论文数:
1.1W
被引数:
5.4W

机构

S
swiss federal institutes of technology domain
学者数:
9.0W
论文数: 8.0W
被引数: 163
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