Oxopalladium structure
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Common Name | Oxopalladium | ||
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CAS Number | 1314-08-5 | Molecular Weight | 122.419 | |
Density | 8.7 | Boiling Point | N/A | |
Molecular Formula | OPd | Melting Point | 870ºC | |
MSDS | Chinese USA | Flash Point | N/A | |
Symbol |
GHS07 |
Signal Word | Warning |
Name | Palladium(II) oxide |
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Synonym | More Synonyms |
Density | 8.7 |
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Melting Point | 870ºC |
Molecular Formula | OPd |
Molecular Weight | 122.419 |
Exact Mass | 121.898399 |
PSA | 17.07000 |
Water Solubility | practically insoluble |
Symbol |
GHS07 |
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Signal Word | Warning |
Hazard Statements | H315-H319-H335 |
Precautionary Statements | P261-P305 + P351 + P338 |
Personal Protective Equipment | dust mask type N95 (US);Eyeshields;Gloves |
Hazard Codes | Xi:Irritant; |
Risk Phrases | R36/37/38 |
Safety Phrases | S26-S36 |
RIDADR | UN 1479 |
WGK Germany | 3 |
HS Code | 28439090 |
HS Code | 28439090 |
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Characterization of hydrogen responsive nanoporous palladium films synthesized via a spontaneous galvanic displacement reaction.
Nanotechnology 23(46) , 465403, (2012) A model is presented regarding the mechanistic properties associated with the interaction of hydrogen with nanoporous palladium (np-Pd) films prepared using a spontaneous galvanic displacement reactio... |
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Linear polystyrene-stabilized PdO nanoparticle-catalyzed Mizoroki-Heck reactions in water.
Molecules 16(11) , 9067-76, (2011) Linear polystyrene-stabilized PdO nanoparticles (PS-PdONPs) were prepared by thermal decomposition of Pd(OAc)(2) in the presence of polystyrene. X-ray diffraction (XRD) and transmission electron micro... |
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Theoretical study on the gas-phase reaction mechanism between palladium monoxide and methane.
J. Comput. Chem. 32(16) , 3440-55, (2011) The gas-phase reaction mechanism between palladium monoxide and methane has been theoretically investigated on the singlet and triplet state potential energy surfaces (PESs) at the CCSD(T)/AVTZ//B3LYP... |
Palladium monoxide |
Palladium, oxo- |
Oxopalladium |
MFCD00011172 |
palladium oxide |
Palladium oxide (Ⅱ) |
EINECS 215-218-3 |