Topics in Catalysis,
Год журнала:
2025,
Номер
unknown
Опубликована: Фев. 17, 2025
Abstract
Green
synthesis
is
a
sustainable
alternative
to
traditional
chemical
methods
for
nanomaterial-based
sensors
because
it
more
affordable,
scalable,
and
does
not
involve
any
harmful
contaminants
when
using
green
materials’
extracts
as
stabilizing
reducing
agents
nanoparticle
synthesis.
The
green-synthesized
nanoparticles
are
extremely
attractive
various
pharmaceutical
applications.
This
review
article
examines
the
most
preferred
eco-friendly
nanomaterials,
their
characterization,
applications
based
on
selected
studies
conducted
in
last
five
years.
It
concludes
that
allow
transformation
of
metals
into
or
materials
act
precursors
carbon-based
nanomaterials.
nanoscale
obtained
through
contribute
low
toxic,
environmentally
benign,
easy,
low-cost
sensing
enhanced
electrocatalytic
performance.
Journal of Hazardous Materials Advances,
Год журнала:
2024,
Номер
13, С. 100401 - 100401
Опубликована: Янв. 13, 2024
Bio-synthesized
metal
oxide
(MeO)
nanoparticles
(NPs)
have
triggered
a
huge
global
research
interest
owing
to
their
advancement
and
various
environmental
remediation,
personal
care
products,
medical,
energy,
sensing,
water
treatment
applications.
They
demonstrate
developing
assets
in
industries,
remarkably
with
heightened
physicochemical,
optical,
mechanical,
electronic
attributes.
The
physical
chemical
routes
been
sticking
point
the
production
of
MeO
NPs,
natural
risks
linked
utilizing
these
approaches.
growth
NPs
via
biologic
method
employing
plants
microorganisms
as
precursor
material
for
metal-ions
(MIs)
reduction
stabilization
has
focus
scientists
recent
years.
Hence,
this
review,
comprehensive
brief
bio-synthesis
approaches
using
plant
extracts
(PEs)
microorganism
components
well
factors
affecting
bio-production
applications
toxicity
were
considered.
ACS Omega,
Год журнала:
2024,
Номер
9(12), С. 13522 - 13533
Опубликована: Март 13, 2024
Soil
pollution
from
various
anthropogenic
and
natural
activities
poses
a
significant
threat
to
the
environment
human
health.
This
study
explored
sources
types
of
soil
emphasized
need
for
innovative
remediation
approaches.
Nanotechnology,
including
use
nanoparticles,
is
promising
approach
remediation.
Diverse
nanomaterials,
nanobiosorbents
nanobiosurfactants,
have
shown
great
potential
in
processes.
Nanotechnology
approaches
are
multifaceted.
Reduction
reactions
immobilization
techniques
demonstrate
versatility
nanomaterials
mitigating
pollution.
Nanomicrobial-based
bioremediation
further
enhances
efficiency
pollutant
degradation
agricultural
soils.
A
literature-based
screening
was
conducted
using
different
search
engines,
PubMed,
Web
Science,
Google
Scholar,
2010
2023.
Keywords
such
as
"soil
pollution,
nanotechnology,
nanoremediation,
heavy
metal
remediation,
remediation"
combinations
these
were
used.
The
metals
nanotechnology
has
demonstrated
results
offers
an
eco-friendly
sustainable
solution
address
this
critical
issue.
Nanobioremediation
robust
strategy
combatting
organic
contamination
soils,
pesticides
herbicides.
nanophytoremediation,
which
assist
plants
extracting
detoxifying
pollutants,
represents
cutting-edge
environmentally
friendly
tackling
Molecules,
Год журнала:
2025,
Номер
30(3), С. 684 - 684
Опубликована: Фев. 4, 2025
The
fundamental
principle
of
Fourier
Transform
Infrared
(FTIR)
spectroscopy
is
based
on
the
vibration
and
rotation
atoms,
it
has
become
a
universal
widely
used
spectral
methodology
for
detection
internal
molecular
structures
in
diverse
range
fields.
A
considerable
number
review
articles
pertaining
to
applications
FTIR
have
been
published
recent
years.
Nevertheless,
comprehensive
summary
application
nanoparticles’
(NPs’)
green
synthesis
yet
be
presented.
In
present
paper,
we
propose
series
case
studies
that
demonstrate
analysis
metal
oxide
NPs
synthesized
using
processes.
Furthermore,
presented
position
functional
group
bands
spectra
are
responsible
reduction,
capping
stabilization
NPs.
this
review,
explore
advantages
limitations
methodologies
overcoming
these
challenges.
We
also
potential
solutions
complex
spectra.
intended
serve
as
compendium
information
researchers
engaged
field
NPs,
utilizing
research
tool.
Environmental Science Nano,
Год журнала:
2024,
Номер
11(3), С. 688 - 707
Опубликована: Янв. 1, 2024
This
perspective
aims
to
shed
light
on
the
transformative
potential
of
sustainable
synthesis
in
guiding
transition
towards
circular
economy
conceptions
nanotechnology
domain.
Discover Sustainability,
Год журнала:
2025,
Номер
6(1)
Опубликована: Янв. 6, 2025
Nanotechnology
has
witnessed
a
paradigm
shift
with
the
emergence
of
sustainable
and
eco-friendly
approach
for
synthesis
Ag/ZnO
nanoparticles
utilizing
various
fruit
peel
extracts.
The
inherent
bioactive
compounds
present
in
peels
offer
green
alternative,
aligning
global
efforts
toward
environmentally
responsible
nanotechnologies.
This
not
only
mitigates
environmental
impacts
but
also
taps
into
cost-effective
readily
available
resources
nanoparticle
synthesis.
scope
this
study
encompasses
comprehensive
exploration
substantial
utilization
applications
derived
from
diverse
delves
process,
considering
range
sources
to
optimize
characteristics.
involves
tailoring
specific
by
fine-tuning
parameters,
diversifying
sources,
fostering
interdisciplinary
collaborations.
emerging
extracts
represents
transformative
nanotechnology.
controlled
release
zinc
opens
avenues
agricultural
applications,
enhancing
nutrient
availability
plants
elevating
crop
yields.
customization
catalysis,
sensing,
optoelectronics
highlights
their
versatility
adaptability
industrial
applications.
methodology,
grounded
principles,
far-reaching
implications.
Embracing
pathway
ensures
optimization
more
ethical
trajectory
nanotechnology,
contributing
well-being
both
industries
environment.
Abstract
The
aim
of
this
study
was
to
explore
the
potential
bio‐silver
nanoparticles
(Ag‐NPs)
synthesized
from
Tetraclinis
articulata
extract,
a
Moroccan
plant,
for
treatment
inflammatory
diseases
related
oxidative
stress,
such
as
arthritis,
cardiovascular
and
metabolic
disorders.
objective
reduce
inflammation
neutralize
free
radicals
by
transferring
therapeutic
properties
secondary
metabolites
plant
nanoparticles.
synthesis
Ag‐NPs
carried
out
an
environmentally
friendly
method,
using
exclusively
extract.
results
showed
that
formation
induced
dark
brown
color
change,
accompanied
absorption
peak
at
450
nm
in
UV‐visible
spectrum,
specific
Scanning
electron
microscopy
analysis
revealed
spherical
approximately
80
nm,
X‐ray
spectroscopy
confirmed
presence
silver.
FTIR
identified
phenolic
compounds
(flavonoids,
polyphenols)
sugars,
responsible
reduction
silver
ions
stability
On
bioactive
level,
these
strong
antioxidant
anti‐inflammatory
potential,
with
activity
comparable
control,
without
cellular
toxicity,
cell
proliferation
tests.
These
open
new
perspectives
targeted
applications,
highlighting
importance
sustainable
methods.