M. Olofsson-martensson et al., Stabilization of electron-dense palladium-hydrido complexes in solid-statehydrides, J AM CHEM S, 122(29), 2000, pp. 6960-6970
Inelastic neutron scattering, supported by IR and Raman spectroscopy, has b
een used to observe a decreasing Pd-H bond strength in a series of four low
-valent palladium-hydrogen complexes in the solid-state hydrides: K-2[Pd(II
)H-4], Li-2[Pd(0)H-2], Na-2[Pd(0)H-2], NaBa[Pd(0)H-3], and Ba-2[Pd(0)H-4].
Further, self-consistent linear muffin-tin orbital calculations of the elec
tronic structures describe the palladium-hydrido complexes in a sd(n) hybri
dization with a decreasing Pd-H bond order as an increasing number of antib
onding orbitals must be utilized. A strong support to the bonding from the
cations via easily polarizable H- is, however, necessary to explain the sta
bility of the systems. The effect of the large polarizability of hydrogen c
an in this respect be compared with the more conventional "back-bonding" to
ligand orbitals for stabilizing a formal low-valent oxidation state by dis
tributing electron density away from the central atom.