Melamine (M) is a popular triamine triazine compound in the field of supramolecular materials. In this work, we have computationally investigated how substituents can be exploited to improve the binding strength of M supramolecules. Two types of covalent modifications were studied: the substitution of an H atom within an amine group −NHR, and the replacement of the whole −NH2 group (R=H, F, CH3 and COCH3). Through our dispersion-corrected density functional theory computations, we explain which covalent modification will show the best self-assembling capabilities, and why the binding energy is enhanced. Our charge density and molecular orbital analyses indicate that the best substituents are those that generate a charge accumulation on the ...
Hydrogen-bonded supramolecular systems are known to obtain extra stabilization from the complexation...
[Fe]-hydrogenase, one of three types of hydrogenases, activates molecular hydrogen. Here, using DFT ...
Tuning of hydrogen bond strength using substituents on phenol and aniline: A possible ligand design ...
In supramolecular chemistry, the rational design of self‐assembled systems remains a challenge. Here...
The melamine (M)/cyanuric acid (CA) supramolecular system is perhaps one of the most exploited in th...
The reaction of 1,3,5-triazine-2,4,6-triamine (melamine, me) with alpha-hydroxycarboxylic acids, nam...
A theoretical study has been conducted on a set of supramolecular complexes based on 1,3,5-triazine-...
In supramolecular chemistry, the rational design of self-assembled systems remains a challenge. Here...
We investigated the tunability of hydrogen bond strength by altering the charge accumulation around ...
Strongly positive electrostatic potential in the central areas of molecules of energetic materials i...
The nature of non-covalent interactions in self-assembling systems is a topic that has aroused great...
Organic based materials forming supramolecular assembly have generated significant interest in many ...
This paper reports the formation of novel hydrogen-bonded assemblies 13·CA obtained upon mixing cyan...
This paper reports the formation of novel hydrogen-bonded assemblies 13·CA obtained upon mixing cyan...
We have used density functional theory calculations to investigate how the hydrogen-bond strength is...
Hydrogen-bonded supramolecular systems are known to obtain extra stabilization from the complexation...
[Fe]-hydrogenase, one of three types of hydrogenases, activates molecular hydrogen. Here, using DFT ...
Tuning of hydrogen bond strength using substituents on phenol and aniline: A possible ligand design ...
In supramolecular chemistry, the rational design of self‐assembled systems remains a challenge. Here...
The melamine (M)/cyanuric acid (CA) supramolecular system is perhaps one of the most exploited in th...
The reaction of 1,3,5-triazine-2,4,6-triamine (melamine, me) with alpha-hydroxycarboxylic acids, nam...
A theoretical study has been conducted on a set of supramolecular complexes based on 1,3,5-triazine-...
In supramolecular chemistry, the rational design of self-assembled systems remains a challenge. Here...
We investigated the tunability of hydrogen bond strength by altering the charge accumulation around ...
Strongly positive electrostatic potential in the central areas of molecules of energetic materials i...
The nature of non-covalent interactions in self-assembling systems is a topic that has aroused great...
Organic based materials forming supramolecular assembly have generated significant interest in many ...
This paper reports the formation of novel hydrogen-bonded assemblies 13·CA obtained upon mixing cyan...
This paper reports the formation of novel hydrogen-bonded assemblies 13·CA obtained upon mixing cyan...
We have used density functional theory calculations to investigate how the hydrogen-bond strength is...
Hydrogen-bonded supramolecular systems are known to obtain extra stabilization from the complexation...
[Fe]-hydrogenase, one of three types of hydrogenases, activates molecular hydrogen. Here, using DFT ...
Tuning of hydrogen bond strength using substituents on phenol and aniline: A possible ligand design ...