TY - JOUR
T1 - Kick-Fukui
T2 - A Fukui Function-Guided Method for Molecular Structure Prediction
AU - Yañez, Osvaldo
AU - Báez-Grez, Rodrigo
AU - Inostroza, Diego
AU - Pino-Rios, Ricardo
AU - Rabanal-León, Walter A.
AU - Contreras-García, Julia
AU - Cardenas, Carlos
AU - Tiznado, William
N1 - Publisher Copyright:
©
PY - 2021/8/23
Y1 - 2021/8/23
N2 - Here, we introduce a hybrid method, named Kick-Fukui, to explore the potential energy surface (PES) of clusters and molecules using the Coulombic integral between the Fukui functions in the first screening of the best individuals. In the process, small stable molecules or clusters whose combination has the stoichiometry of the explored species are used as assembly units. First, a small set of candidates has been selected from a large and stochastically generated (Kick) population according to the maximum value of the Coulombic integral between the Fukui functions of both fragments. Subsequently, these few candidates are optimized using a gradient method and density functional theory (DFT) calculations. The performance of the program has been evaluated to explore the PES of various systems, including atomic and molecular clusters. In most cases studied, the global minimum (GM) has been identified with a low computational cost. The strategy does not allow to identify the GM of some silicon clusters; however, it predicts local minima very close in energy to the GM that could be used as the initial population of evolutionary algorithms.
AB - Here, we introduce a hybrid method, named Kick-Fukui, to explore the potential energy surface (PES) of clusters and molecules using the Coulombic integral between the Fukui functions in the first screening of the best individuals. In the process, small stable molecules or clusters whose combination has the stoichiometry of the explored species are used as assembly units. First, a small set of candidates has been selected from a large and stochastically generated (Kick) population according to the maximum value of the Coulombic integral between the Fukui functions of both fragments. Subsequently, these few candidates are optimized using a gradient method and density functional theory (DFT) calculations. The performance of the program has been evaluated to explore the PES of various systems, including atomic and molecular clusters. In most cases studied, the global minimum (GM) has been identified with a low computational cost. The strategy does not allow to identify the GM of some silicon clusters; however, it predicts local minima very close in energy to the GM that could be used as the initial population of evolutionary algorithms.
UR - http://www.scopus.com/inward/record.url?scp=85113923083&partnerID=8YFLogxK
U2 - 10.1021/acs.jcim.1c00605
DO - 10.1021/acs.jcim.1c00605
M3 - Article
C2 - 34378935
AN - SCOPUS:85113923083
SN - 1549-9596
VL - 61
SP - 3955
EP - 3963
JO - Journal of Chemical Information and Modeling
JF - Journal of Chemical Information and Modeling
IS - 8
ER -