We have quantum chemically analyzed the cooperative effects and structural deformations of hydrogen-bonded urea, deltamide, and squaramide linear chains using dispersion-corrected density functional theory at BLYP-D3(BJ)/TZ2P level of theory. Our purpose is twofold: (i) reveal the bonding mechanism of the studied systems that lead to their self-assembly in linear chains; and (ii) rationalize the C-C bond equalization in the ring moieties of deltamide and squaramide upon polymerization. Our energy decomposition and Kohn-Sham molecular orbital analyses reveal cooperativity in all studied systems, stemming from the charge separation within the sigma-electronic system by charge transfer from the carbonyl oxygen lone pair donor orbital of one mo...
Cooperative effects in a one-dimensional network of intermolecular bifurcated hydrogen bonding inter...
Quantum calculations are used to examine how various constituent components of a large molecule cont...
The synergy of aromatic gain and hydrogen bonding in a supramolecular polymer is explored. Partially...
Cooperative properties of halogen bonds were investigated with computational experiments based on di...
Computational quantum chemical tools were applied to investigate important driving forces underlying...
Understanding the molecular mechanism of cooperative self-assembly is a key component in the design ...
Understanding the molecular mechanism of cooperative self-assembly is a key component in the design ...
Understanding the molecular mechanism of cooperative self-assembly is a key component in the design ...
Understanding the molecular mechanism of cooperative self-assembly is a key component in the design ...
Understanding the molecular mechanism of cooperative self-assembly is a key component in the design ...
This is the peer reviewed version of the following article: Chemistry - A European Journal 24.46 (20...
Understanding the molecular mechanism of cooperative self-assembly is a key component in the design ...
Understanding the molecular mechanism of cooperative self-assembly is a key component in the design ...
Cooperative effects in a one-dimensional network of intermolecular bifurcated hydrogen bonding inter...
This dissertation focuses on computational explorations of the relationships between aromaticity and...
Cooperative effects in a one-dimensional network of intermolecular bifurcated hydrogen bonding inter...
Quantum calculations are used to examine how various constituent components of a large molecule cont...
The synergy of aromatic gain and hydrogen bonding in a supramolecular polymer is explored. Partially...
Cooperative properties of halogen bonds were investigated with computational experiments based on di...
Computational quantum chemical tools were applied to investigate important driving forces underlying...
Understanding the molecular mechanism of cooperative self-assembly is a key component in the design ...
Understanding the molecular mechanism of cooperative self-assembly is a key component in the design ...
Understanding the molecular mechanism of cooperative self-assembly is a key component in the design ...
Understanding the molecular mechanism of cooperative self-assembly is a key component in the design ...
Understanding the molecular mechanism of cooperative self-assembly is a key component in the design ...
This is the peer reviewed version of the following article: Chemistry - A European Journal 24.46 (20...
Understanding the molecular mechanism of cooperative self-assembly is a key component in the design ...
Understanding the molecular mechanism of cooperative self-assembly is a key component in the design ...
Cooperative effects in a one-dimensional network of intermolecular bifurcated hydrogen bonding inter...
This dissertation focuses on computational explorations of the relationships between aromaticity and...
Cooperative effects in a one-dimensional network of intermolecular bifurcated hydrogen bonding inter...
Quantum calculations are used to examine how various constituent components of a large molecule cont...
The synergy of aromatic gain and hydrogen bonding in a supramolecular polymer is explored. Partially...