The ground state structure of C(4N+2) rings is believed to exhibit a geometric transition from angle alternation (N < or = 2) to bond alternation (N > 2). All previous density functional theory (DFT) studies on these molecules have failed to reproduce this behavior by predicting either that the transition occurs at too large a ring size, or that the transition leads to a higher symmetry cumulene. Employing the recently proposed perspective of delocalization error within DFT we rationalize this failure of common density functional approximations (DFAs) and present calculations with the rCAM-B3LYP exchange-correlation functional that show an angle-to-bond-alternation transition between C(10) and C(14). The behavior exemplified here manifests ...
The conformational landscape of 22 different non, mono-, and disubstituted compounds with a fivememb...
In this paper we use density functional theory with all the common exchange-correlation functionals ...
obtain the correct sign of the relative energies of the allene and propyne isomers of C3H4 and that ...
The electronic structure of C_(4N+2) carbon rings exhibits competing many-body effects of Huckel aro...
Individual molecular orbital (MO) contributions to the magnetic shielding of atoms as well as to the...
International audienceThe VB correlation diagram model (Figure 1) is used to answer the title questi...
International audienceC-4n cyclacenes exhibit strong bond-alternation in their equilibrium geometry....
Density functional theory (DFT) is often used to determine the electronic and geometric structures o...
DFT-computed energies of polyhedric hydrocarbons, such as dodecahedrane C20H20, its smaller analogs ...
It has previously been shown that self-consistent-charge density-functional tight-binding (SCC-DFTB)...
In this article, we address the role of the long-range exchange corrections in description of the cy...
Geometry is one of the primary and most direct indicators of aromaticity and antiaromaticity: a regu...
In this work the relationship between the formal number of π-electrons, d-orbital conjugation topolo...
Density functional theory (DFT) is often used to determine the electronic and geometric structures o...
The conformational landscape of 22 different non, mono-, and disubstituted compounds with a fivememb...
In this paper we use density functional theory with all the common exchange-correlation functionals ...
obtain the correct sign of the relative energies of the allene and propyne isomers of C3H4 and that ...
The electronic structure of C_(4N+2) carbon rings exhibits competing many-body effects of Huckel aro...
Individual molecular orbital (MO) contributions to the magnetic shielding of atoms as well as to the...
International audienceThe VB correlation diagram model (Figure 1) is used to answer the title questi...
International audienceC-4n cyclacenes exhibit strong bond-alternation in their equilibrium geometry....
Density functional theory (DFT) is often used to determine the electronic and geometric structures o...
DFT-computed energies of polyhedric hydrocarbons, such as dodecahedrane C20H20, its smaller analogs ...
It has previously been shown that self-consistent-charge density-functional tight-binding (SCC-DFTB)...
In this article, we address the role of the long-range exchange corrections in description of the cy...
Geometry is one of the primary and most direct indicators of aromaticity and antiaromaticity: a regu...
In this work the relationship between the formal number of π-electrons, d-orbital conjugation topolo...
Density functional theory (DFT) is often used to determine the electronic and geometric structures o...
The conformational landscape of 22 different non, mono-, and disubstituted compounds with a fivememb...
In this paper we use density functional theory with all the common exchange-correlation functionals ...
obtain the correct sign of the relative energies of the allene and propyne isomers of C3H4 and that ...