Journal of Inorganic and Organometallic Polymers and Materials,
Journal Year:
2024,
Volume and Issue:
unknown
Published: Nov. 13, 2024
Abstract
Molecular
perovskite
DAP-4
(NH
4
)(C
6
H
12
N
2
)(ClO
)
3
can
expose
high
oxidizing
capability,
with
superior
decomposition
enthalpy
compared
ammonium
perchlorate
(AP).
was
developed
via
molecular
assembly
method.
The
potential
impact
of
copper
nanoparticles
(Cu
NPs)
on
thermal
evaluated.
Reactive
Cu
NPs
50
nm
were
integrated
into
structure
solvent
evaporation.
Uniform
dispersion
matrix
assessed
using
elemental
mapping.
Whereas
AP
demonstrated
733
J/g;
virgin
and
Cu/DAP-4
nanocomposite
experienced
3800,
4150
J/g
respectively.
offered
decrease
in
main
temperature
by
49
o
C.
Decomposition
kinetics
investigated
Kissinger,
Kissinger–Akahira–Sunose
(KAS).
apparent
activation
energy
134.97
±
3.02
kJ/mol
216.32
4.42
for
DAP-4.
combustion
time
from
70
ms
to
31
ms,
intense
flame.
Copper
dramatic
change
mechanism
F
1
.Copper
could
act
as
efficient
reactive
catalyst
particles;
that
be
oxidized
CuO
the
evolution
3700
J/g.
evolved
nanocatalyst
boost
enthalpy.
Energies,
Journal Year:
2023,
Volume and Issue:
16(14), P. 5451 - 5451
Published: July 18, 2023
Considering
the
renewable
electricity
production
using
sustainable
technologies,
such
as
solar
photovoltaics
or
wind
turbines,
it
is
essential
to
have
systems
that
allow
for
storing
energy
produced
during
periods
of
lower
consumption
well
transportation
through
distribution
network.
Despite
hydrogen
being
considered
a
good
candidate,
presents
several
problems
related
its
extremely
low
density,
which
requires
use
very
high
pressures
store
it.
In
addition,
density
in
volumetric
terms
still
clearly
than
most
liquid
fuels.
These
facts
led
consideration
ammonia
an
alternative
compound
storage
carrier.
this
sense,
review
deals
with
evaluation
green
different
energetic
purposes,
carrier
vector,
generator
and
E-fuel.
study
has
addressed
latest
studies
propose
nitrogen-derived
compounds,
i.e.,
urea,
hydrazine,
ammonium
nitrate,
etc.,
study,
possibility
other
update
ecosystem
surrounding
ammonia,
been
assessed,
from
consumption,
including
storage,
transportation,
etc.
Additionally,
future
challenges
achieving
technical
economically
viable
transition
determined.
CrystEngComm,
Journal Year:
2025,
Volume and Issue:
unknown
Published: Jan. 1, 2025
This
work
not
only
provides
a
safe,
fast,
and
facile
method
for
the
synthesis
of
spherical
AP
materials,
but
can
also
be
extended
to
other
water-soluble
crystals.