Journal of Colloid and Interface Science,
Год журнала:
2024,
Номер
683, С. 722 - 730
Опубликована: Дек. 16, 2024
The
addition
of
water
to
a
non-ionic
N-oxide
deep
eutectic
solvent(DES)
composed
phenylacetic
acid
(PhAA)
and
N-dodecylmorpholine-N-oxide(MO-12)
in
1:1
M
ratio(PhAA/MO-12)
will
promote
interfacial
nanostructure
formation
due
increased
proton
transfer
solvophobic
interactions,
leading
reduced
friction.
Journal of Medicinal Chemistry,
Год журнала:
2024,
Номер
67(17), С. 14807 - 14819
Опубликована: Авг. 26, 2024
Deep
eutectic
solvents
(DES)
are
environmentally
friendly
with
the
potential
to
dissolve
bioactive
compounds
without
affecting
their
characteristics.
DES
has
special
qualities
that
can
be
customized
meet
unique
characteristics
of
a
biomolecule/active
pharmaceutical
ingredient
(API)
in
accordance
various
therapeutic
needs,
providing
reliable
approach
opening
door
for
creation
cutting-edge
drug
formulations
by
resolving
solubility
issues
pharmaceutics.
This
study
outlines
newly
developing
approaches
solve
problem
inefficient
API
extraction
due
poor
solubility.
These
emerging
strategies
also
have
capacity
alter
chemical
and
physical
stability
API,
which
triggers
drug's
shelf
life
possible
health
benefits.
It
is
anticipated
highlighted
methods
processes
will
developed
capitalize
on
improve
delivery
sector.
Journal of Molecular Liquids,
Год журнала:
2024,
Номер
406, С. 124871 - 124871
Опубликована: Май 11, 2024
Deep
eutectic
solvents
have
gained
attention
as
environmentally
friendly
alternatives
in
various
technological
applications.
Likewise,
it
is
known
the
relevant
effect
of
water
on
physicochemical
properties
Eutectics,
especially
for
hydrophilic
ones.
In
this
study,
Betaine
–
based
type
III
Eutectic
(with
ethylene
glycol,
fructose,
malic
acid
or
citric
Hydrogen
Bond
Donors)
are
considered
and
structuring
solutions
(content
lower
than
20
%)
were
investigated
considering
volumetric
properties,
optical
(refraction
index),
dynamic
(viscosity,
thermal
conductivity,
electrical
conductivity)
well
characteristics
liquid
phase
nature
such
polarizability
molecular
packing.
Viscosity
measurements
demonstrated
a
wide
variation
viscosities,
with
content
playing
significant
role,
thus
probing
how
largely
affect
Eutectics.
Additionally,
high
led
to
improved
particularly
mixtures
containing
Donors.
The
decreased
increasing
content,
packing
calculations
indicated
that
most
voluminous
molecules
occupied
interstitial
voids.
Our
findings
contribute
understanding
Eutectics
solution,
aiding
their
optimization
sustainable
ACS Sustainable Chemistry & Engineering,
Год журнала:
2024,
Номер
12(4), С. 1365 - 1377
Опубликована: Янв. 18, 2024
High-power
energy
storage
devices,
and
supercapacitors
(SCs)
in
particular,
are
critical
for
the
progress
of
sector
as
they
gather
distinctive
characteristics,
namely,
long
cyclability
high-power
density.
However,
SC
still
faces
some
challenges,
very
low
density
when
compared
to
batteries
need
operate
organic
solvents
attain
larger
potential
windows.
Therefore,
advances
necessary
reach
higher
more
environmentally
friendly
electrolytes.
This
study
focuses
on
testing
mixtures
water
with
hydrophobic
eutectic
systems
(ESs),
which
components
compatible,
electrolytes
SCs.
Four
different
ESs
sodium
hexanoate
carboxyl
acids
(hexanoic
acid,
octanoic
nonanoic
decanoic
acid)
were
studied.
The
physical
characterization
these
was
studied
through
measurement
exploration
several
properties,
sol–gel
diagrams,
conductivity,
viscosity,
density,
ionicity.
electrochemical
performance
tested
double-layer
capacitor
cells
microporous
activated
carbon
electrodes
cyclic
voltage
diffraction
galvanostatic
charge–discharge.
Overall,
it
observed
that
hydrophobicity
allows
conductive
gels
form
simply
by
adding
water.
conductivity
fluidity
increased
content.
Additionally,
specific
capacitance
decreases
acid
chain
increases,
while
voltammograms,
resistive
features
vanish
content
increases.
From
this
study,
ES
hexanoic
60%
molar
composition
[NaC6:C6(0.6)]
showed
highest
22.3
mS/cm
at
293.15
K,
electrode
capacitance,
71.6
F/g
0.2
A/g,
a
weight
60%.