The
world’s
increasing
population
has
a
higher
demand
for
food
and
suitable
environment.
However,
using
conventional
farming
methods
industrial
agrochemicals
leads
to
environmental
risk,
which
is
significant
threat
the
next
generation.
So,
nanotechnology
can
be
blessing
saving
our
environment
producing
risk-free
foods
at
minimal
cost
in
an
eco-friendly
way.
Nanoparticles
(NPs)
used
as
nanopesticides,
nanofertilizers,
nanosensors,
nanopriming
agents,
other
applications
agriculture
help
mitigate
issues
such
high
production
costs,
excessive
pesticide
fertilizer
requirements,
soil
depletion,
various
biotic
abiotic
challenges.
A
variety
of
important
information
from
different
research
findings
on
metal
nanoparticles,
their
characteristics,
synthesis
process,
roles
precision
sustainable
are
included
this
article.
This
literature
review
discusses
benefits
nanoparticles
plant
growth
development,
ease
green
nanoparticle
over
chemical
physical
approaches,
effects
agriculture.
Future
perspectives
also
covered
article
based
these
impacts.
Metal
biosensors
seed-priming
materials,
contribute
seed
germination
even
adverse
conditions.
overall,
potentiality
lieu
inorganic
possible
contribution
Research Square (Research Square),
Journal Year:
2024,
Volume and Issue:
unknown
Published: Jan. 8, 2024
Abstract
Zinc
chromium
oxide
(Cr/ZnO,
5wt.%)
was
prepared
by
a
facile
chemical
co-precipitation
route.
The
structure,
composition,
and
bonding
were
analyzed
using
X-ray
diffraction
(XRD),
Energy
dispersive
spectroscopy
(EDX),
Fourier-transform
infrared
(FTIR)
indicating
that
ions
integrated
the
host
framework
to
form
Cr/ZnO
nanocomposite.
Scanning
electron
microscopy
(SEM)
Transmission
(TEM)
micrographs
showed
comb-shaped
nanoparticles
with
an
average
size
20
nm
large
surface
area.
energy
gap
of
thin
films
estimated
from
T%
R%
measurements
which
exhibit
strong
optical
absorption
edge
close
visible
spectrum.
insecticidal
activity
synthesized
nanocombs
against
C.
pipiens
larvae
evaluated
LC
50
(30.15
ppm)
90
(100.22
ppm).
Besides,
nanocomposite
high
antibacterial
performance
gram-positive
bacteria
(
Bacillus
subtilis
)
gram-negative
Proteus
vulgaris
inhibition
zones
21.9
19
mm,
respectively.
Royal Society of Chemistry eBooks,
Journal Year:
2024,
Volume and Issue:
unknown, P. 340 - 357
Published: Aug. 2, 2024
Various
harmful
substances
cause
environmental
pollution,
leading
to
groundwater,
ocean,
soil,
and
air
which
has
become
severe
due
industrial
development.
Environmental
restoration
methods
conventionally
include
physical,
chemical,
biological
methods,
but
these
may
not
be
a
green
environmentally
friendly
approach.
Due
their
efficient
adsorptive
properties,
nanomaterials
help
remove
such
as
chemical
dyes,
total
petroleum
hydrocarbons,
other
wastes
the
environment.
Nanobioremediation,
nanobiological
restoration,
is
an
emerging
method
for
decomposition,
absorption,
filtration,
leaching,
mineralization,
accumulation,
transformation
of
detrimental
in
The
utilization
synthetic
can
also
reduce
burden,
potential
promising
achieve
goals
ecological
conservation
sustainable
The
world’s
increasing
population
has
a
higher
demand
for
food
and
suitable
environment.
However,
using
conventional
farming
methods
industrial
agrochemicals
leads
to
environmental
risk,
which
is
significant
threat
the
next
generation.
So,
nanotechnology
can
be
blessing
saving
our
environment
producing
risk-free
foods
at
minimal
cost
in
an
eco-friendly
way.
Nanoparticles
(NPs)
used
as
nanopesticides,
nanofertilizers,
nanosensors,
nanopriming
agents,
other
applications
agriculture
help
mitigate
issues
such
high
production
costs,
excessive
pesticide
fertilizer
requirements,
soil
depletion,
various
biotic
abiotic
challenges.
A
variety
of
important
information
from
different
research
findings
on
metal
nanoparticles,
their
characteristics,
synthesis
process,
roles
precision
sustainable
are
included
this
article.
This
literature
review
discusses
benefits
nanoparticles
plant
growth
development,
ease
green
nanoparticle
over
chemical
physical
approaches,
effects
agriculture.
Future
perspectives
also
covered
article
based
these
impacts.
Metal
biosensors
seed-priming
materials,
contribute
seed
germination
even
adverse
conditions.
overall,
potentiality
lieu
inorganic
possible
contribution