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First true square-planar Hg(II) compound: synthesis and full characterization of trans-[Hg{Ph 2PNP(O)Ph 2- P, O} 2]
The reaction of Hg(O 3SCF 3) 2 with bis(diphenylphosphino)amine, Ph 2PNHPPh 2 (dppam), produces the novel, rare face-to-face complex [Hg 2(O 3SCF 3) 4(dppam) 2] ( 1). Treatment of 1 with Na 2N 2O 3 leads to trans-[Hg{Ph 2PNP(O)Ph 2- P, O} 2] ( 2) via regioselective oxidation and simultaneous deproto...
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Published in: | Inorganic chemistry communications 2003, Vol.6 (1), p.61-67 |
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Main Authors: | , , , , , , , |
Format: | Article |
Language: | English |
Subjects: | |
Citations: | Items that this one cites Items that cite this one |
Online Access: | Get full text |
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Summary: | The reaction of Hg(O
3SCF
3)
2 with bis(diphenylphosphino)amine, Ph
2PNHPPh
2 (dppam), produces the novel, rare face-to-face complex [Hg
2(O
3SCF
3)
4(dppam)
2] (
1). Treatment of
1 with Na
2N
2O
3 leads to
trans-[Hg{Ph
2PNP(O)Ph
2-
P,
O}
2] (
2) via regioselective oxidation and simultaneous deprotonation of dppam.
2 is the first true square-planar Hg(II) compound. In
2 the coordination plane and the five-membered rings of the HgNOP
2 moieties are completely coplanar indicating strong π-bonding interactions. Both
1 and
2 have been fully characterized by X-ray structure analyses, NMR spectroscopy
(
199
Hg{
1
H},
31
P{
1
H},
13
C{
1
H},
1
H)
, ESI and FAB mass spectrometry, IR spectroscopy, elemental analyses, and melting points. Since in Hg(II) compounds relativistic effects favour linear coordination and Hg(II) donor atom preferences play a significant role, the Hg–P bond length of 2.4042(7) Å in
2 is short, whereas the Hg–O bond length of 2.7138(15) Å is long. In view of the X-ray structures of
1 and
2, it is shown that the delocalized charge in [Ph
2PNP(O)Ph
2]
− is responsible for the achievement of the square-planar coordination in a Hg(II) compound. A similar π-bonding effect has been observed in several square-planar complexes of Pt(II), Pd(II), and Ni(II) containing
cis-1,2-bis(diphenylphosphino)ethene (
cis-dppen). |
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ISSN: | 1387-7003 1879-0259 |
DOI: | 10.1016/S1387-7003(02)00684-6 |