We report a straight-forward, solvent-free moderate temperature synthetic method for the production of several phosphorus-rich transition-metal phosphides (orthorhombic FeP 2, cubic CoP 3, cubic NiP 2, monoclinic CuP 2, and monoclinic PdP 2 ). Notably, this synthetic approach provides facile access to the high-temperature/high-pressure cubic phase of NiP 2 . The general synthetic strategy involves the direct reaction of anhydrous metal dichloride pressed pellets with molecular P 4 vapor or solid−solid reactions between the metal dichloride and red phosphorus that are intimately mixed into pellets. Both of these reaction strategies involve the evolution of a volatile PCl 3 byproduct and produce crystalline MP x ( x ≥ 2) at moderate temperatures of 500−700 °C. The pellets remain intact throughout the synthesis, and the macrostructure of the MP x products resembles that of the reactant pellets. By varying the phosphorus source, the percentage of the pellet precursor mass that is retained in the final metal phosphide pellet products changes, which influences the morphology and microstructure of the final phosphide pellet.
No takes yet. Share an insight, caveat, or question.
Barry et al. (2009) studied this question.
Synapse has enriched 3 closely related papers on similar clinical questions. Consider them for comparative context: