The conformational properties of linear alkanes, CnH2n+2, have been of intense interest for many years. Experiments and corresponding electronic structure calculations were first reported in the mid-2000s and continue to the present time. These focus on the minimum chain length where the transition from the linear minimum to the hairpin minimum occurs. We recently reported a transferable, many-body permutationally invariant polynomial (MB-PIP) potential for linear alkanes trained on roughly 253 000 B3LYP electronic energies for C14H30. Here we report a Δ-ML approach to elevate this B3LYP-based and a new PBE0+MBD MB-PIP potential using roughly 4500 Pair Natural Orbital Local Coupled Cluster (PNO-LCCSD(T)-F12) energies. The new Δ-corrected potentials predict the difference in these minima accurately, compared to benchmark PNO-LCCSD(T)-F12 energies results, over the range C12H28 to C28H58. Vibrational power spectra are also reported for C14H30 using the original B3LYP-based and Δ-ML corrected potentials. These new MB-PIP potentials for linear alkanes are the most accurate ones currently available and can be used in studies of properties of linear alkanes.

“Gold-Standard” Δ-Machine Learned Transferable Potential for Linear Alkanes / C. Qu, A. Nandi, P.L. Houston, Q. Yu, R. Conte, J.M. Bowman. - In: THE JOURNAL OF PHYSICAL CHEMISTRY LETTERS. - ISSN 1948-7185. - 16:(2025), pp. 12393-12400. [Epub ahead of print] [10.1021/acs.jpclett.5c02946]

“Gold-Standard” Δ-Machine Learned Transferable Potential for Linear Alkanes

R. Conte;
2025

Abstract

The conformational properties of linear alkanes, CnH2n+2, have been of intense interest for many years. Experiments and corresponding electronic structure calculations were first reported in the mid-2000s and continue to the present time. These focus on the minimum chain length where the transition from the linear minimum to the hairpin minimum occurs. We recently reported a transferable, many-body permutationally invariant polynomial (MB-PIP) potential for linear alkanes trained on roughly 253 000 B3LYP electronic energies for C14H30. Here we report a Δ-ML approach to elevate this B3LYP-based and a new PBE0+MBD MB-PIP potential using roughly 4500 Pair Natural Orbital Local Coupled Cluster (PNO-LCCSD(T)-F12) energies. The new Δ-corrected potentials predict the difference in these minima accurately, compared to benchmark PNO-LCCSD(T)-F12 energies results, over the range C12H28 to C28H58. Vibrational power spectra are also reported for C14H30 using the original B3LYP-based and Δ-ML corrected potentials. These new MB-PIP potentials for linear alkanes are the most accurate ones currently available and can be used in studies of properties of linear alkanes.
Cluster chemistry; Hydrocarbons; Molecular mechanics; Molecules; Potential energy
Settore CHEM-02/A - Chimica fisica
Settore PHYS-04/A - Fisica teorica della materia, modelli, metodi matematici e applicazioni
2025
20-nov-2025
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/1199636
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