We analyzed the ligand electronic effect in a gold(I)-catalyzed intramolecular alkyne hydroamination, through a DFT and charge- displacement function (CDF) study.We found that, in the presence of p-electron conjugation between the alkyne and the nucleophilic functionality, electron poor ligands modify the coordination mode and the geometric parameters of the substrate in such a way that, contrary to expectations, the activation barrier of the nucleophilic attack increases. This remarkable effect is due to the competition between alkyne activation and nucleophile deactivation. The general relevance of these findings is highlighted
This work aims at understanding the mechanism and regioselectivity in ligand-controlled gold-catalyz...
A systematic study of protodeauration, a crucial step often found in gold catalysis, was performed u...
The hydroauration of internal and terminal alkynes by gold(III) hydride complexes [(C^N^C)AuH] was f...
We analyzed the ligand electronic effect in a gold(i)-catalyzed intramolecular alkyne hydroamination...
We analyzed the ligand electronic effect in a gold(I)-catalyzed intramolecular alkyne hydroamination...
High level ab initio calculations have been carried out on an archetypal gold(I)-catalyzed reaction:...
We have conducted a theoretical exploration of the ligand electronic effect in the protodeauration s...
In this work DFT calculations have been performed to investigate the anion/ligand interplay in the r...
The use of cationic gold(i) species in the activation of substrates containing CC bonds has become a...
Alkylgold(I) complexes were formed from the gold(I)-promoted intramolecular addition of various amin...
In this work DFT calculations have been performed to investigate the anion/ligand interplay in the r...
The reaction mechanism of the gold(III)-catalysed hydroalkoxylation of alkynes is studied to provide...
The coordination modes of the [Au(PPh3)](+) cation to metal alkynyl complexes have been investigated...
High level ab initio calculations have been carried out on an archetypal gold(I)-catalyzed reaction...
A catálise homogênea por complexos de ouro(I) geralmente tem como substrato um alquino e ocorre por ...
This work aims at understanding the mechanism and regioselectivity in ligand-controlled gold-catalyz...
A systematic study of protodeauration, a crucial step often found in gold catalysis, was performed u...
The hydroauration of internal and terminal alkynes by gold(III) hydride complexes [(C^N^C)AuH] was f...
We analyzed the ligand electronic effect in a gold(i)-catalyzed intramolecular alkyne hydroamination...
We analyzed the ligand electronic effect in a gold(I)-catalyzed intramolecular alkyne hydroamination...
High level ab initio calculations have been carried out on an archetypal gold(I)-catalyzed reaction:...
We have conducted a theoretical exploration of the ligand electronic effect in the protodeauration s...
In this work DFT calculations have been performed to investigate the anion/ligand interplay in the r...
The use of cationic gold(i) species in the activation of substrates containing CC bonds has become a...
Alkylgold(I) complexes were formed from the gold(I)-promoted intramolecular addition of various amin...
In this work DFT calculations have been performed to investigate the anion/ligand interplay in the r...
The reaction mechanism of the gold(III)-catalysed hydroalkoxylation of alkynes is studied to provide...
The coordination modes of the [Au(PPh3)](+) cation to metal alkynyl complexes have been investigated...
High level ab initio calculations have been carried out on an archetypal gold(I)-catalyzed reaction...
A catálise homogênea por complexos de ouro(I) geralmente tem como substrato um alquino e ocorre por ...
This work aims at understanding the mechanism and regioselectivity in ligand-controlled gold-catalyz...
A systematic study of protodeauration, a crucial step often found in gold catalysis, was performed u...
The hydroauration of internal and terminal alkynes by gold(III) hydride complexes [(C^N^C)AuH] was f...