We present a combined experimental and theoretical study of the structures and bench stability of halogen-bonded cocrystals involving the volatile halogen bond donor octafluoro-1,4-diiodobutane, with phenazine and acridine as acceptors. Cocrystallization experiments using mechanochemistry and solution crystallization revealed three chemically and structurally distinct cocrystals. Whereas only one cocrystal form has been observed with acridine, cocrystallization with phenazine led to two stoichiometrically different cocrystals, in which phenazine employs either one or two nitrogen atoms per molecule as halogen bond acceptor sites. Cocrystal stability was evaluated experimentally by simultaneous thermogravimetric analysis and differential the...
Cocrystals have recently gained attention as attractive alternate solid forms for drug development. ...
Apremilast (APR), an anti-psoriatic agent, easily forms isostructural cocrystals and solvates with a...
Abstract Organic room temperature phosphorescent materials are very limited to date. Halogen bonding...
The concept of variable stoichiometry cocrystallization is explored in halogen-bonded systems. Three...
We present a periodic density functional theory study of the stability of 350 organic cocrystals rel...
We present a periodic density functional theory study of the stability of 350 organic cocrystals rel...
Polycyclic aromatic compounds such as acridine and phenazine are popular molecular partners used in ...
Several synthetic techniques are available for the preparation of halogen-bonded adducts, including ...
Among non-covalent interactions, halogen bonding is emerging as a new powerful tool for supramolecul...
U sklopu disertacije pripravljeno je 37 novih kokristala jodperfluorbenzenâ i jednostavnih derivata ...
U sklopu disertacije pripravljeno je 37 novih kokristala jodperfluorbenzenâ i jednostavnih derivata ...
3-Iodo-2-propynyl-N-butylcarbamate (IPBC) is an iodinated antimicrobial product used globally as a p...
3-Iodo-2-propynyl-N-butylcarbamate (IPBC) is an iodinated antimicrobial product used globally as a p...
3-Iodo-2-propynyl-N-butylcarbamate (IPBC) is an iodinated antimicrobial product used globally as a p...
3-Iodo-2-propynyl-N-butylcarbamate (IPBC) is an iodinated antimicrobial product used globally as a p...
Cocrystals have recently gained attention as attractive alternate solid forms for drug development. ...
Apremilast (APR), an anti-psoriatic agent, easily forms isostructural cocrystals and solvates with a...
Abstract Organic room temperature phosphorescent materials are very limited to date. Halogen bonding...
The concept of variable stoichiometry cocrystallization is explored in halogen-bonded systems. Three...
We present a periodic density functional theory study of the stability of 350 organic cocrystals rel...
We present a periodic density functional theory study of the stability of 350 organic cocrystals rel...
Polycyclic aromatic compounds such as acridine and phenazine are popular molecular partners used in ...
Several synthetic techniques are available for the preparation of halogen-bonded adducts, including ...
Among non-covalent interactions, halogen bonding is emerging as a new powerful tool for supramolecul...
U sklopu disertacije pripravljeno je 37 novih kokristala jodperfluorbenzenâ i jednostavnih derivata ...
U sklopu disertacije pripravljeno je 37 novih kokristala jodperfluorbenzenâ i jednostavnih derivata ...
3-Iodo-2-propynyl-N-butylcarbamate (IPBC) is an iodinated antimicrobial product used globally as a p...
3-Iodo-2-propynyl-N-butylcarbamate (IPBC) is an iodinated antimicrobial product used globally as a p...
3-Iodo-2-propynyl-N-butylcarbamate (IPBC) is an iodinated antimicrobial product used globally as a p...
3-Iodo-2-propynyl-N-butylcarbamate (IPBC) is an iodinated antimicrobial product used globally as a p...
Cocrystals have recently gained attention as attractive alternate solid forms for drug development. ...
Apremilast (APR), an anti-psoriatic agent, easily forms isostructural cocrystals and solvates with a...
Abstract Organic room temperature phosphorescent materials are very limited to date. Halogen bonding...