Novel silver(I),
gold(I), and palladium(II) complexes were synthesized
with bidentate heteroditopic carbene ligands that combine an imidazol-2-ylidene
(
n
NHC) with a 1,2,3-triazol-5-ylidene (
tz
NHC) connected by a propylene bridge. The silver(I) and gold(I) complexes
were dinuclear species, [M
2
(
n
NHC-
tz
NHC)
2
](PF
6
)
2
(M = Ag
or Au), with the two bidentate ligands bridging the metal centers,
whereas in the palladium(II) complex [Pd(
n
NHC-
tz
NHC)
2
](PF
6
)
2
, the two
ligands were chelated on the same metal center. Because of the presence
of two different carbene units, isomers were observed for the gold(I)
and palladium(II) complexes. The molecular structures of the head-to-tail
isomer for gold(I) complexes, with a twisted or folded-
syn
conformation of the bridge between the carbene units, were determined
by X-ray diffraction analysis. The study was completed with a systematic
structural investigation through density functional theory (DFT) calculations.
For palladium(II) species, the head-to-head form was structurally
characterized. The dinuclear gold(I) complexes were emissive in the
solid state in the blue region (PLQY up to 8%); time-dependent density
functional theory (abbreviated as TD-DFT) calculations disclosed that
the absorption bands have metal-to-ligand-charge-transfer character
and evidenced that the emission occurs from the T
1
level
(phosphorescence).