Gold–Thiolate Nanocluster Dynamics and Intercluster Reactions Enabled by a Machine Learned Interatomic Potential
Caitlin A Mccandler
1, 2
,
Antti Pihlajamäki
3
,
Sami Malola
3
,
H Häkkinen
3, 4
,
Kristin A Persson
1, 5
,
Kristin Persson
1, 5
4
Publication type: Journal Article
Publication date: 2024-07-10
scimago Q1
wos Q1
SJR: 4.497
CiteScore: 24.2
Impact factor: 16.0
ISSN: 19360851, 1936086X
PubMed ID:
38986022
Abstract
Monolayer protected metal clusters comprise a rich class of molecular systems and are promising candidate materials for a variety of applications. While a growing number of protected nanoclusters have been synthesized and characterized in crystalline forms, their dynamical behavior in solution, including prenucleation cluster formation, is not well understood due to limitations both in characterization and first-principles modeling techniques. Recent advancements in machine-learned interatomic potentials are rapidly enabling the study of complex interactions such as dynamical behavior and reactivity on the nanoscale. Here, we develop an Au–S–C–H atomic cluster expansion (ACE) interatomic potential for efficient and accurate molecular dynamics simulations of thiolate-protected gold nanoclusters (Aun(SCH3)m). Trained on more than 30,000 density functional theory calculations of gold nanoclusters, the interatomic potential exhibits ab initio level accuracy in energies and forces and replicates nanocluster dynamics including thermal vibration and chiral inversion. Long dynamics simulations (up to 0.1 μs time scale) reveal a mechanism explaining the thermal instability of neutral Au25(SR)18 clusters. Specifically, we observe multiple stages of isomerization of the Au25(SR)18 cluster, including a chiral isomer. Additionally, we simulate coalescence of two Au25(SR)18 clusters and observe series of clusters where the formation mechanisms are critically mediated by ligand exchange in the form of [Au–S]n rings.
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18
Total citations:
18
Citations from 2024:
17
(94.44%)
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GOST
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Mccandler C. A. et al. Gold–Thiolate Nanocluster Dynamics and Intercluster Reactions Enabled by a Machine Learned Interatomic Potential // ACS Nano. 2024. Vol. 18. No. 29. pp. 19014-19023.
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Mccandler C. A., Pihlajamäki A., Malola S., Häkkinen H., Persson K. A., Persson K. Gold–Thiolate Nanocluster Dynamics and Intercluster Reactions Enabled by a Machine Learned Interatomic Potential // ACS Nano. 2024. Vol. 18. No. 29. pp. 19014-19023.
Cite this
RIS
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TY - JOUR
DO - 10.1021/acsnano.4c03094
UR - https://pubs.acs.org/doi/10.1021/acsnano.4c03094
TI - Gold–Thiolate Nanocluster Dynamics and Intercluster Reactions Enabled by a Machine Learned Interatomic Potential
T2 - ACS Nano
AU - Mccandler, Caitlin A
AU - Pihlajamäki, Antti
AU - Malola, Sami
AU - Häkkinen, H
AU - Persson, Kristin A
AU - Persson, Kristin
PY - 2024
DA - 2024/07/10
PB - American Chemical Society (ACS)
SP - 19014-19023
IS - 29
VL - 18
PMID - 38986022
SN - 1936-0851
SN - 1936-086X
ER -
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@article{2024_Mccandler,
author = {Caitlin A Mccandler and Antti Pihlajamäki and Sami Malola and H Häkkinen and Kristin A Persson and Kristin Persson},
title = {Gold–Thiolate Nanocluster Dynamics and Intercluster Reactions Enabled by a Machine Learned Interatomic Potential},
journal = {ACS Nano},
year = {2024},
volume = {18},
publisher = {American Chemical Society (ACS)},
month = {jul},
url = {https://pubs.acs.org/doi/10.1021/acsnano.4c03094},
number = {29},
pages = {19014--19023},
doi = {10.1021/acsnano.4c03094}
}
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Mccandler, Caitlin A., et al. “Gold–Thiolate Nanocluster Dynamics and Intercluster Reactions Enabled by a Machine Learned Interatomic Potential.” ACS Nano, vol. 18, no. 29, Jul. 2024, pp. 19014-19023. https://pubs.acs.org/doi/10.1021/acsnano.4c03094.
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