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N33dimethylbut

N33dimethylbut is a chemical compound that belongs to the class of organic molecules containing nitrogen and carbon atoms. The systematic nomenclature indicates it is a dimethylbutyl derivative with nitrogen substitution at the third position.

This compound typically exists as a colorless or pale yellow liquid at standard temperature and pressure conditions.

N33dimethylbut is primarily used in organic synthesis applications within laboratory settings. Chemists utilize this compound as

The compound exhibits moderate solubility in common organic solvents such as ethanol, acetone, and dichloromethane. It

Safety considerations for handling N33dimethylbut include wearing appropriate personal protective equipment such as gloves and safety

Industrial applications remain limited primarily to research and development contexts rather than large-scale commercial production. The

It
has
a
molecular
formula
that
reflects
its
composition
of
carbon,
hydrogen,
and
nitrogen
atoms
arranged
in
a
specific
structural
configuration.
The
dimethyl
substitution
pattern
creates
branching
in
the
molecular
structure,
which
influences
its
physical
and
chemical
properties.
an
intermediate
in
the
production
of
more
complex
organic
molecules.
Its
reactivity
profile
makes
it
valuable
for
creating
various
pharmaceutical
compounds
and
specialty
chemicals.
The
nitrogen-containing
functional
group
provides
sites
for
further
chemical
modifications
and
reactions.
generally
shows
limited
solubility
in
water
due
to
its
predominantly
hydrophobic
carbon
framework.
Storage
requirements
typically
include
keeping
the
compound
in
a
cool,
dry
environment
away
from
direct
sunlight
and
incompatible
materials.
goggles.
The
compound
should
be
stored
in
properly
labeled
containers
with
adequate
ventilation.
While
specific
toxicity
data
may
vary,
standard
laboratory
safety
protocols
should
be
followed
when
working
with
this
chemical.
compound's
specialized
nature
restricts
its
use
to
specific
synthetic
pathways
where
its
unique
structural
features
provide
advantages
in
molecular
construction.