Current Microwave Chemistry,
Journal Year:
2023,
Volume and Issue:
10(2), P. 180 - 197
Published: Sept. 1, 2023
Abstract:
Microwave-assisted
synthesis
is
a
powerful
tool
in
organic
chemistry,
providing
rapid
and
efficient
method
for
the
of
bioactive
heterocycles.
The
application
micro-waves
significantly
reduces
reaction
times
increases
percentage
yields
with
high
purity
final
product.
To
make
synthetic
protocol
greener,
magnetic
nanocata-lyst
rapidly
growing
area
interest
nowadays.
Magnetic
nanocatalyst,
its
unique
fea-tures
like
separable
facile
recovery
from
media
heterogeneously,
makes
overall
strategy
cleaner,
faster,
cost-effective.
Aiming
this,
present
review,
we
will
focus
on
infusion
nanocatalyst
to
microwave-assisted
vari-ous
classes
azaheterocyclic
compounds,
including
pyridines,
pyrimidines,
quinolines,
ben-zimidazoles.
methodologies
involved
preparation
these
heterocycles
are
highlighted,
along
their
biological
activities.
Furthermore,
this
most
recent
advanced
strategies
incorporate
nanocatalysts
nat-ural
products
containing
moieties
drug
discovery
programs
elucidated
detail,
incoming
future
scope
challenges.
Plants,
Journal Year:
2025,
Volume and Issue:
14(5), P. 716 - 716
Published: Feb. 26, 2025
Nanotechnology
has
emerged
as
a
transformative
field
in
agriculture,
offering
innovative
solutions
to
enhance
plant
growth
and
resilience
against
abiotic
stresses.
This
review
explores
the
diverse
applications
of
nanomaterials
focusing
on
their
role
promoting
development
improving
tolerance
drought,
salinity,
heavy
metals,
temperature
fluctuations.
The
method
classifies
commonly
employed
sciences
examines
unique
physicochemical
properties
that
facilitate
interactions
with
plants.
Key
mechanisms
nanomaterial
uptake,
transport,
influence
plants
at
cellular
molecular
levels
are
outlined,
emphasizing
effects
nutrient
absorption,
photosynthetic
efficiency,
overall
biomass
production.
basis
stress
is
examined,
highlighting
nanomaterial-induced
regulation
reactive
oxygen
species,
antioxidant
activity,
gene
expression,
hormonal
balance.
Furthermore,
this
addresses
environmental
health
implications
nanomaterials,
sustainable
eco-friendly
approaches
mitigate
potential
risks.
integration
nanotechnology
precision
agriculture
smart
technologies
promises
revolutionize
agricultural
practices.
provides
valuable
insights
into
future
directions
R&D,
paving
way
for
more
resilient
system.
Chemistry of Materials,
Journal Year:
2024,
Volume and Issue:
36(5), P. 2177 - 2193
Published: March 1, 2024
Bacterial
infection,
the
cause
of
many
diseases,
has
become
one
most
severe
global
public
health
threats.
The
emergence
antimicrobial
resistance
poses
a
significant
challenge
in
treating
bacterial
infections.
Recently,
synthetic
macrocycles
with
various
well-defined
cavities
and
excellent
dynamic,
reversible,
directional
noncovalent
interactions
can
not
only
form
complexation
biomarkers
or
drugs
via
host–guest
recognition
but
also
enable
controlled
drug
delivery
response
to
external
stimuli,
such
as
pH,
thermal,
redox,
competitive
binding,
light
irradiation.
Therefore,
macrocycle-based
functional
materials
have
received
increasing
attention
promising
candidates
for
precise
on-demand
bacteria
inhibition.
This
Perspective
provides
an
overview
recent
progress
design
synthesis
antibacterial
properties.
mechanisms
applications
are
discussed
detail.
Finally,
existing
challenges
future
opportunities
this
emerging
research
field
put
forward
hope
promoting
further
development
toward
superior
biomedical
applications.
Journal of Agricultural and Food Chemistry,
Journal Year:
2023,
Volume and Issue:
71(31), P. 12070 - 12079
Published: July 27, 2023
Adenosine
triphosphate
(ATP),
an
essential
metabolite
for
active
microorganisms
to
maintain
life
activities,
has
been
widely
regarded
as
a
marker
of
cell
activity
and
indicator
microbial
contamination.
Herein,
we
designed
two
near-infrared
(NIR)
fluorescent
nanoprobes
named
CYA@ZIF-90
CYQ@ZIF-90
by
encapsulating
the
NIR
dye
CYA/CYQ
in
ZIF-90
rapid
detection
ATP.
Between
them,
nanoprobe
can
achieve
higher
emission
(702
nm)
(2
min).
Based
on
superior
spatiotemporal
resolution
imaging
ATP
fluctuations
living
cells,
applicability
bacteria
was
explored
first
time.
The
indirectly
realizes
quantitative
bacteria,
limit
be
low
74
CFU
mL-1.
Therefore,
prepared
is
expected
become
universal
sensing
tool,
which
further
applied
evaluate
apoptosis,
proliferation,
food-harmful
control.