184417-98-9Relevant academic research and scientific papers
Atom-sparing synthesis of tertiary diphosphine dichalcogenides from acetylenes and secondary phosphine chalcogenides
Malysheva,Belogorlova,Kuimov,Ivanova,Volkov,Ushakov,Gusarova,Trofimov
scheme or table, p. 232 - 238 (2010/08/05)
Secondary phosphine oxides and phosphine sulfides react with acetylene, methylacetylene, and phenylacetylene in the presence of strong bases (KOH-DMSO, KOH-THF) by the mechanism of double nucleophilic α,β-addition to form tertiary diphosphine dioxides and
Advanced approaches in radiation-chemical synthesis of phosphorus- containing polymers
Tarasova, Natalia P.,Zanin, Alexey A.,Smetannikov, Yury V.,Vilesov, Alexander S.
body text, p. 1028 - 1034 (2011/10/31)
The transition from micro- to nanoscale systems brings major changes to the basic physicochemical properties of polymers. The polymers of elemental phosphorus (phosphorus-containing polymers [PCPs]) display this phenomenon, for example, in magnification of reactivity, changes of self-ignition temperature and of other critical technological characteristics. It determined our special attention to the progress of synthesis technology of nanoscale inorganic polymers with the tailor-made properties. At the heart of the technology designed, there are principles of green chemistry which allow us to take into account the current trends in inorganic synthesis, in particular, the usage of ionizing radiation and varying of media properties for the nanoscale particle growth control. This type of the process control allowed us to move from the acting principle of physicochemical investigations composition- properties to a principle synthesis conditions-composition- properties . The control by means of varying media properties may be realized by different approaches: variation of the solvent nature (limitation on solubility of phosphorus in different solvents) and variation of media polarity and the structural organization of the solution (incorporation of ionic liquids [ILs] into the reaction media).
