Triangular gold(i) N-arylimidazolate clusters have been prepared by a pNHC metalation protocol and their photoluminescence has been switched on by the addition of Ag+.
The isocyanide ligands in complexes fac-[Mn(CNR)(bipy)(CO)3]+ are selectively transformed into formamidines, carbodiimides and formimidates upon nucleophilic addition of NH2Me or alkoxides and subsequent treatment with Ag2O, which promotes tautomerization or oxidation processes of the former carbene ligands.
A series of mononuclear gold(I) protic
N-heterocyclic carbene (pNHC)
complexes was prepared by a reaction of trinuclear gold(I) imidazolate
clusters with acids of variable strength (pK
a ranging from −14 to 6.7), which induce the opening
of the Au3 ring cluster by protonation. Thus, the reaction
of [Au3(μ-Im)3] (Im = N-alkyl or N-arylimidazolate) with weak acids such
as phosphonium salts or 4-methoxythiophenol yields mononuclear derivatives
of the general formula [Au(pNHC)PR3]+ or [Au(pNHC)SR],
respectively, whereas with HCl complexes [Au(pNHC)Cl] are obtained.
The noncoordinating strong acid CF3SO3H reacts
with [Au3(μ-Im)3] in the presence of isocyanide
(CNR) to afford the cationic species [Au(pNHC)CNR]+, from
which the rare example of bis-carbene derivative [Au(pNHC)(pADC)]+ (pADC = protic acyclic diamino carbene) is formed by a reaction
with NHMe2. Additionally, a number of neutral complexes
were obtained by substitution reactions of the chloride ligand in
[Au(pNHC)Cl] with anions such as cyanide, thiocyanate, and diethyldithiocarbamate.
A subtle change in
the substituents at the nitrogen atoms in the N,N′-diarylformamidine complexes
of formula fac-[Mn(RNC(H)NHR)(bipy)(CO)3]+ (1a, R = phenyl; 1b, R = 4-dimethylaminophenyl) produces, upon deprotonation, either
the monodentate formamidinate complex fac-[Mn(PhNC(H)NPh)(bipy)(CO)3] (2a) or metallacylic complex 3b, which features a carbamoyl residue arising from nucleophilic attack
to a vicinal carbonyl ligand. Complexes type 3 are also
formed when using N-aryl-N′-alkyl-formamidines
as well as N,N′-dialkylformamidines.
Quantum Theory of Atoms in Molecules computations show the existence
of a weak bond critical point of mainly noncovalent electrostatic
type between the uncoordinated nitrogen atom of the formamidinate
and a carbonyl ligand in 2a, which appears to be an isolable
intermediate species that precedes the formation of metallacyclic
complexes 3.
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