Nickel Complexes of 4,5-Bis(diorganophosphinomethyl)acridine Ligands
Organometallics,
Journal Year:
2025,
Volume and Issue:
unknown
Published: March 29, 2025
Language: Английский
Diverging Reactivity in Anilidophosphine Supported Group III Complexes
Florian Hett,
No information about this author
Benjamin Wittwer,
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Stephanie Bereiter
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et al.
Chemistry - An Asian Journal,
Journal Year:
2025,
Volume and Issue:
unknown
Published: April 28, 2025
Abstract
We
report
the
synthesis
of
scandium
and
yttrium
halide
complexes
with
bidentate,
monoanionic
anilidophosphine
(PN)
ligands
general
formula
2
MX
(M
=
Sc
(
1‐X
),
Y
2‐X
);
X
Cl
1‐Cl
/
2‐Cl
I
1‐I
2‐I
).
Attempts
to
functionalize
these
by
salt
metathesis
reaction
revealed
that
chlorido
are
quite
unreactive
precursors,
whereas
iodo
readily
engage
in
a
broad
variety
reactions.
azide
1‐N
3
2‐N
)
as
well
heavy
cyanate
M(OC
Pn
Sc;
P
1‐OCP
As
(1‐
OCAs
M
Y;
2‐OCP
2‐OCAs
)).
Furthermore,
amido
phosphanido
M(
HMesityl)
N
1‐NHMes
,
2‐NHMes
1‐PHMes
2‐PHMes
reported.
synthesize
benzyl
type
M(Benzyl)
Sc,
Y,
La
drastic
differences
reactivity
group
III
metal
ions.
While
displayed
elimination
KPN
without
formation
defined
complexes,
for
lanthanum,
C‐H
activation
chemistry
has
been
observed,
yielding
‐ate
complex
3‐CH
.
Language: Английский
Iron Complexes of 4,5-Bis(diorganophosphinomethyl)acridine Ligands
Inorganic Chemistry,
Journal Year:
2024,
Volume and Issue:
unknown
Published: Sept. 26, 2024
The
search
for
an
iron
analog
of
the
established
ruthenium-based
catalysts
containing
methylene-extended
4,5-bis(diorganophosphinomethyl)acridine
ligands,
[FeHCl(CO)(L
Language: Английский