Investigating Nanomaterials for Improved Barrier Properties in Food Packaging
Deleted Journal,
Journal Year:
2025,
Volume and Issue:
2(2)
Published: Jan. 13, 2025
This
review
examines
the
potential
of
nanomaterials
in
revolutionizing
food
packaging,
focusing
on
their
role
enhancing
barrier
properties
and
extending
shelf
life
packaged
foods.
Traditional
packaging
materials
often
fall
short
effectively
protecting
against
oxygen,
moisture,
UV
light,
resulting
diminished
quality
shorter
life.
Nanomaterials,
including
nanoclays,
metal
oxide
nanoparticles
(e.g.,
ZnO,
TiO₂),
carbon-based
graphene,
carbon
nanotubes),
biodegradable
options
like
cellulose
nanocrystals,
have
emerged
as
promising
solutions.
These
offer
exceptional
gas
moisture
properties,
antimicrobial
effects,
protection
capabilities.
The
provides
an
in-depth
exploration
various
nanomaterials,
highlighting
distinctive
mechanisms;
such
tortuosity
which
enhance
performance
by
limiting
permeability.
It
also
discusses
recent
advancements
integrating
into
both
flexible
rigid
systems,
well
active
intelligent
that
employs
nanosensors
for
real-time
monitoring
freshness
spoilage.
Despite
potential,
challenges
toxicity
concerns,
environmental
impacts,
economic
constraints
to
large-scale
adoption
are
addressed.
emphasizes
need
future
research
dual-function
can
simultaneously
improve
enable
sensing.
innovations
could
transform
technologies,
promoting
enhanced
safety
sustainability.
Language: Английский
Chitosan: An Overview of Its Properties, Solubility, Functional Technologies, Food and Health Applications.
Carbohydrate Research,
Journal Year:
2025,
Volume and Issue:
550, P. 109409 - 109409
Published: Jan. 31, 2025
Language: Английский
Chitosan and its derivatives: A novel approach to gut microbiota modulation and immune system enhancement
International Journal of Biological Macromolecules,
Journal Year:
2024,
Volume and Issue:
289, P. 138633 - 138633
Published: Dec. 13, 2024
Language: Английский
Biopolymers: An inclusive review
Hybrid Advances,
Journal Year:
2025,
Volume and Issue:
unknown, P. 100418 - 100418
Published: Feb. 1, 2025
Language: Английский
Waste‐Derived Activated Carbon for Supercapacitors: Current Trends and Future Prospects
Shailendra Rajput,
No information about this author
Varee Tyagi,
No information about this author
Sonika Sonika
No information about this author
et al.
Energy Technology,
Journal Year:
2025,
Volume and Issue:
unknown
Published: Feb. 12, 2025
The
primary
challenge
for
supercapacitor
technology
lies
in
achieving
battery‐level
performance
while
reducing
costs.
Enhancing
energy
density
involves
strategic
adjustments
such
as
increasing
capacitance,
reliance
on
electrode–electrolyte
interactions,
or
boosting
cell
voltage,
dependent
electrolyte
stability.
Thus,
optimizing
requires
careful
electrode
material
design
and
selection.
Because
of
their
abundant
availability,
exceptional
performance,
simple
processing
methods,
various
naturally
occurring
bio‐wastes
industrial
wastes
have
been
explored
the
production
activated
carbon
supercapacitors.
Additionally,
agricultural
by‐products
sugarcane
bagasse,
rice
husk,
tea
waste,
coconut
shell,
peanut
lotus
stem,
hemp
fiber
show
promise
raw
materials
graphene
synthesis.
Life
cycle
assessments
beyond
greenhouse
gas
emissions
efficiency,
along
with
calibrated
evaluation
techniques
techno‐economic
analyses,
are
essential
meaningful
sustainability
comparisons.
rapid
expansion
bioenergy
sector
underscores
need
responsible
management
evaluations.
This
article
emphasizes
potential
waste‐derived
a
sustainable
efficient
Language: Английский
A new insight into the synergetic thermal stability effect of acetylacetone derivatives and zinc arginine on polyvinyl chlorine under static and dynamic thermal aging conditions
Yanqin Shi,
No information about this author
Jiong Mei,
No information about this author
Yuchen Yao
No information about this author
et al.
Journal of Vinyl and Additive Technology,
Journal Year:
2025,
Volume and Issue:
unknown
Published: March 10, 2025
Abstract
Zinc
arginine
[Zn(Arg)
2
]
was
a
zinc
salt
stabilizer
with
excellent
initial
whiteness
and
long‐term
thermal
stability
for
PVC,
as
reported
by
our
previous
work.
Clarifying
the
synergistic
mechanisms
of
Zn(Arg)
its
auxiliary
stabilizers
under
dynamic
static
conditions
an
important
scientific
issue
to
guide
practical
application
.
In
this
work,
acetylacetone
(ATE)
found
be
good
especially
at
4:6
ratio
ATE
However,
best
derivatives
were
not
same,
which
stearoylbenzoylmethane
(SBM),
dibenzoylmethane
(DBM),
benzoylacetone
(BZT),
respectively.
The
reasons
that
could
react
produce
acetylacetonate
(Zn‐ATE)
aging
condition.
conditions,
replaced
unstable
chlorine
atoms
on
PVC
chains
α‐C
between
two
carbonyl
groups
through
alkylation
reaction.
conclusions
confirmed
calculation
results
natural
population
analysis
(NPA)
charge.
addition,
compatibility
another
reason
transparency
samples.
Highlights
effect
zinc,
arginine,
investigated.
There
are
different
effects
conditions.
Zinc,
reacted
charge
used
confirm
mechanisms.
Language: Английский
The Utilization of Biopolymer Hydrogels to Encapsulate and Protect Probiotics in Foods
Process Biochemistry,
Journal Year:
2025,
Volume and Issue:
unknown
Published: March 1, 2025
Language: Английский
Enhancing the Electro‐Stimulation Performance of Polyvinyl Chloride Matrix With Nanofillers: A Comprehensive Review
I. A. Ali,
No information about this author
Ahmed Ali,
No information about this author
Weimin Yang
No information about this author
et al.
Polymers for Advanced Technologies,
Journal Year:
2025,
Volume and Issue:
36(4)
Published: April 1, 2025
ABSTRACT
Electroactive
polymers
(EAPs)
such
as
plasticized
polyvinyl
chloride
(PVC)
reinforced
with
nanofillers
have
emerged
a
promising
approach
for
developing
soft
composite
materials
or
gels
stimuli‐responsive
properties.
This
review
explores
the
integration
of
highly
electro‐stimuli
nanofillers,
including
carbon
nanotubes
(CNTs),
reduced
graphene
oxide
(rGO),
ionic
liquids
(ILs),
and
cellulose
nanocrystals
(CNCs),
into
PVC
matrix.
The
strategic
incorporation
these
significantly
enhances
mechanical
properties
gel
composites
while
maintaining
their
flexibility
lightweight
nature.
paper
provides
comprehensive
discussion
on
roles
in
composites,
impact
physicochemical
interactions,
deformation
mechanisms,
actuator
performance.
Furthermore,
it
delves
preparation
techniques
critical
parameters
that
influence
structural
functional
PVC‐based
composites.
findings
highlight
potential
PVC‐nanofiller
advanced
applications,
wearable
artificial
muscles,
robotics,
flexible
actuators,
adaptive
lenses,
biomedical
devices.
By
synthesizing
recent
advancements
this
field,
underscores
transformative
enabling
next‐generation
responsive
systems.
Language: Английский
Carbon Dots with Wide-Spectrum Absorption for Enhanced Anti-Aging of Poly(vinyl chloride) Films
Dong Chen,
No information about this author
Zijian Li,
No information about this author
Hong Bi
No information about this author
et al.
Journal of Materials Chemistry B,
Journal Year:
2025,
Volume and Issue:
unknown
Published: Jan. 1, 2025
Eco-friendly
carbon
dots
synthesized
from
Garcinia
mangostana
rind
via
solvothermal
methods
enhance
PVC
film
photostability
and
mechanical
properties,
offering
promising
durability
for
sunlight-exposed
applications
such
as
food
packaging.
Language: Английский