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The production of phosphine gas occurs only in specialized, local conditions.
Phosphine may be prepared in a variety of ways.
It generates phosphine gas according to the following hydrolysis equation.
Phosphine can be absorbed into the body by inhalation.
The main target organ of phosphine gas is the respiratory tract.
It breaks down when heated into phosphine and phosphorous acid.
They successfully created a faint cool light by mixing phosphine with air and nitrogen.
There are also very small amounts of acetylene, ethane and phosphine.
The phosphine reagents slowly undergo air oxidation in living systems.
The method requires a base and a tertiary phosphine.
They behave like phosphine ligands, but are less basic.
His work involved exploring the chemistry of tungsten phosphine derivatives.
Phosphine is also far less basic than ammonia.
The resulting derivatives can be hydrolyzed to give the phosphine oxide.
They sprayed with phosphine gas, then sealed the hatches.
It reacts with acids to make phosphine gas.
In 1974 Heck introduced phosphine ligands into the equation.
The phosphine is purified by distillation under reduced pressure.
Its name is derived from its description - being both chiral and a phosphine.
The origin(s) of atmospheric phosphine is not certain.
A related hypothesis involves the natural chemiluminescence of phosphine.
When it is heated, it turns into phosphoric acid and phosphine.
Because of these two features, metal phosphine complexes are useful in homogeneous catalysis.
In this system, a phosphine is a δλ compound.