Local energy decomposition (LED) analysis decomposes the interaction energy between two fragments calculated at the domain-based local pair natural orbital CCSD(T) (DLPNO-CCSD(T)) level of theory into a series of chemically meaningful contributions and has found widespread applications in the study of noncovalent interactions. Herein, an extension of this scheme that allows for the analysis of interaction energies of open-shell molecular systems calculated at the UHF-DLPNO-CCSD(T) level is presented. The new scheme is illustrated through applications to the CH2···X (X = He, Ne, Ar, Kr, and water) and heme···CO interactions in the low-lying singlet and triplet spin states. The results are used to discuss the mechanism that governs the change...
Quantum chemical methods, particularly density functional theory (DFT), have become increasingly imp...
An energy decomposition analysis (EDA) scheme is developed for understanding the intermolecular inte...
In this study we examine the accuracy of domain-based local pair natural orbital coupled cluster the...
Local energy decomposition (LED) analysis decomposes the interaction energy between two fragments ca...
The local energy decomposition (LED) analysis allows for a decomposition of the accurate domain-base...
The development of post-Hartree–Fock (post-HF) energy decomposition schemes that are able to decompo...
The linear-scaling local coupled cluster method DLPNO-CCSD(T) allows calculations on systems contain...
The London dispersion (LD)-corrected Hartree–Fock (HF) method (HFLD) is an ab initio approach for th...
Local energy decomposition analysis provides a breakdown of the domain‐based local pair natural orbi...
There has been a growing interest in quantitative predictions of the intermolecular binding energy o...
The variation in the singlet–triplet energy gap of diphenylcarbene (DPC) upon interaction with hydro...
The domain-based local pair-natural orbital coupled-cluster (DLPNO-CC) theory has recently emerged a...
In this work, the extension of the previously developed domain based local pair-natural orbital (DLP...
A parallel implementation of the recently developed local pair natural orbital coupled electron pair...
The development of post-Hartree–Fock (post-HF) energy decomposition schemes that are able to decompo...
Quantum chemical methods, particularly density functional theory (DFT), have become increasingly imp...
An energy decomposition analysis (EDA) scheme is developed for understanding the intermolecular inte...
In this study we examine the accuracy of domain-based local pair natural orbital coupled cluster the...
Local energy decomposition (LED) analysis decomposes the interaction energy between two fragments ca...
The local energy decomposition (LED) analysis allows for a decomposition of the accurate domain-base...
The development of post-Hartree–Fock (post-HF) energy decomposition schemes that are able to decompo...
The linear-scaling local coupled cluster method DLPNO-CCSD(T) allows calculations on systems contain...
The London dispersion (LD)-corrected Hartree–Fock (HF) method (HFLD) is an ab initio approach for th...
Local energy decomposition analysis provides a breakdown of the domain‐based local pair natural orbi...
There has been a growing interest in quantitative predictions of the intermolecular binding energy o...
The variation in the singlet–triplet energy gap of diphenylcarbene (DPC) upon interaction with hydro...
The domain-based local pair-natural orbital coupled-cluster (DLPNO-CC) theory has recently emerged a...
In this work, the extension of the previously developed domain based local pair-natural orbital (DLP...
A parallel implementation of the recently developed local pair natural orbital coupled electron pair...
The development of post-Hartree–Fock (post-HF) energy decomposition schemes that are able to decompo...
Quantum chemical methods, particularly density functional theory (DFT), have become increasingly imp...
An energy decomposition analysis (EDA) scheme is developed for understanding the intermolecular inte...
In this study we examine the accuracy of domain-based local pair natural orbital coupled cluster the...