The CCSD(T) method is known as the gold-standard in quantum chemistry and has been the method of choice in quantum chemistry for over 20 years to obtain accurate bond energies and molecular properties. Its computational cost formally scales as the seventh power of the size of the system and can be prohibitive for large molecules. As part of our efforts to reduce the computational cost of the CCSD(T) method yet retain its accuracy, we present a simple, efficient, and user-friendly protocol to extrapolate to CCSD(T) energies in conjunction with MP2 energies. The method is based on the automated error-canceling thermochemical hierarchy previously developed by us called the Connectivity-Based Hierarchy (CBH). For a test set containing 30 div...
ABSTRACT: An efficient procedure is introduced to obtain the basis-set limit in electronic structure...
The ATOMIC protocol is a quantum-chemical thermochemistry protocol designed to obtain accurate atomi...
An accurate description of noncovalent interaction energies is one of the most challenging tasks in ...
Taking the coupled-cluster singles and doubles (CCSD) level augmented by a perturbative treatment of...
Chemically accurate and comprehensive studies of the virtual space of all possible molecules are sev...
In this work, we apply the recently proposed MP2 correction to incremental energies within the domai...
The leading cause of error in standard coupled cluster theory calculations of thermodynamic properti...
The construction of the potential energy surface (PES) of even a medium-sized molecule employing cor...
Chemically accurate and comprehensive studies of the virtual space of all possible molecules are sev...
One of the central concerns of computational chemistry is that of efficiency (i.e. the development o...
Inspired by Pople diagrams popular in quantum chemistry, we introduce a hierarchical scheme, based o...
structure by means of quantum-chemistry as well as on the accuracy nowadays reachable will be presen...
Owing to the steep scaling behavior, highly accurate CCSD(T) calculations, the contemporary gold st...
Several approximations are introduced and tested to reduce the computational expenses of the explici...
By judicious use of extrapolations to the 1-particle basis set limit and $n$-particle calibration te...
ABSTRACT: An efficient procedure is introduced to obtain the basis-set limit in electronic structure...
The ATOMIC protocol is a quantum-chemical thermochemistry protocol designed to obtain accurate atomi...
An accurate description of noncovalent interaction energies is one of the most challenging tasks in ...
Taking the coupled-cluster singles and doubles (CCSD) level augmented by a perturbative treatment of...
Chemically accurate and comprehensive studies of the virtual space of all possible molecules are sev...
In this work, we apply the recently proposed MP2 correction to incremental energies within the domai...
The leading cause of error in standard coupled cluster theory calculations of thermodynamic properti...
The construction of the potential energy surface (PES) of even a medium-sized molecule employing cor...
Chemically accurate and comprehensive studies of the virtual space of all possible molecules are sev...
One of the central concerns of computational chemistry is that of efficiency (i.e. the development o...
Inspired by Pople diagrams popular in quantum chemistry, we introduce a hierarchical scheme, based o...
structure by means of quantum-chemistry as well as on the accuracy nowadays reachable will be presen...
Owing to the steep scaling behavior, highly accurate CCSD(T) calculations, the contemporary gold st...
Several approximations are introduced and tested to reduce the computational expenses of the explici...
By judicious use of extrapolations to the 1-particle basis set limit and $n$-particle calibration te...
ABSTRACT: An efficient procedure is introduced to obtain the basis-set limit in electronic structure...
The ATOMIC protocol is a quantum-chemical thermochemistry protocol designed to obtain accurate atomi...
An accurate description of noncovalent interaction energies is one of the most challenging tasks in ...