Membranes,
Journal Year:
2022,
Volume and Issue:
12(5), P. 472 - 472
Published: April 27, 2022
Technological
progress
has
made
chemistry
assume
a
role
of
primary
importance
in
our
daily
life.
However,
the
worsening
level
environmental
pollution
is
increasingly
leading
to
realization
more
eco-friendly
chemical
processes
due
advent
green
chemistry.
The
challenge
produce
and
better
while
consuming
rejecting
less.
It
represents
profitable
approach
address
problems
new
demands
industrial
competitiveness.
concept
finds
application
several
material
syntheses
such
as
organic,
inorganic,
coordination
materials
nanomaterials.
One
different
goals
pursued
field
science
GC
for
producing
sustainable
polymers
membranes.
In
this
context,
extremely
relevant
production
imprinted
by
means
its
combination
with
molecular
imprinting
technology.
Referring
issue,
present
review,
polymeric
discussed.
addition,
principles
well
their
developing
greenificated,
membranes
are
presented.
particular,
actions
(e.g.,
use
harmless
chemicals,
natural
polymers,
ultrasound-assisted
synthesis
extraction,
supercritical
CO2,
etc.)
characterizing
post-imprinting
process
molecularly
highlighted.
Biosensors,
Journal Year:
2022,
Volume and Issue:
12(5), P. 314 - 314
Published: May 9, 2022
Two-dimensional
materials
(2DMs)
exhibited
great
potential
for
applications
in
science,
energy
storage,
environmental
biomedicine,
sensors/biosensors,
and
others
due
to
their
unique
physical,
chemical,
biological
properties.
In
this
review,
we
present
recent
advances
the
fabrication
of
2DM-based
electrochemical
sensors
biosensors
food
safety
biomolecular
detection
that
are
related
human
health.
For
aim,
firstly,
introduced
bottom-up
top-down
synthesis
methods
various
2DMs,
such
as
graphene,
transition
metal
oxides,
dichalcogenides,
MXenes,
several
other
graphene-like
materials,
then
demonstrated
structure
surface
chemistry
these
which
play
a
crucial
role
functionalization
2DMs
subsequent
composition
with
nanoscale
building
blocks
nanoparticles,
biomolecules,
polymers.
Then,
sensors/biosensors
nitrite,
heavy
ions,
antibiotics,
pesticides
foods
drinks
introduced.
Meanwhile,
determination
monitoring
key
small
molecules
diseases
health
presented
commented
on.
We
believe
review
will
be
helpful
promoting
construct
novel
electronic
nanodevices
monitoring.
Chemical Reviews,
Journal Year:
2023,
Volume and Issue:
123(18), P. 11047 - 11136
Published: Sept. 7, 2023
Advances
in
nanotechnology
and
nanomaterials
have
attracted
considerable
interest
play
key
roles
scientific
innovations
diverse
fields.
In
particular,
increased
attention
has
been
focused
on
carbon-based
exhibiting
extended
structures
unique
properties.
Among
these
materials,
zero-dimensional
structures,
including
fullerenes,
carbon
nano-onions,
nanodiamonds,
dots,
possess
excellent
bioaffinities
superior
fluorescence
properties
that
make
suitable
for
application
to
environmental
biological
sensing,
imaging,
therapeutics.
This
review
provides
a
systematic
overview
of
the
classification
structural
properties,
design
principles
preparation
methods,
optical
sensing
applications
nanomaterials.
Recent
interesting
breakthroughs
sensitive
selective
imaging
heavy
metal
pollutants,
hazardous
substances,
bioactive
molecules
as
well
information
encryption,
super-resolution
photoacoustic
phototherapy
nanomedicine
delivery
are
main
focus
this
review.
Finally,
future
challenges
prospects
materials
highlighted
envisaged.
presents
comprehensive
basis
directions
designing,
developing,
applying
fascinating
fluorescent
sensors
fabricated
based
specific
requirements
numerous
research
Advanced Science,
Journal Year:
2023,
Volume and Issue:
10(15)
Published: March 26, 2023
The
rapid
rise
of
triboelectric
nanogenerators
(TENGs),
which
are
emerging
energy
conversion
devices
in
advanced
electronics
and
wearable
sensing
systems,
has
elevated
the
interest
high-performance
multifunctional
materials.
Among
them,
cellulosic
materials,
affording
high
efficiency,
biodegradability,
customizability,
becoming
a
new
front-runner.
inherently
low
dielectric
constant
limits
increase
surface
charge
density.
However,
owing
to
its
unique
structure
excellent
processability,
cellulose
shows
great
potential
for
modulation,
providing
strong
impetus
applications
era
Internet
Things
artificial
intelligence.
This
review
aims
provide
comprehensive
insights
into
fabrication
dielectric-enhanced
materials
via
modulation.
exceptional
advantages
research
progress
highlighted.
effects
constant,
polarization,
percolation
threshold
on
density
systematically
investigated,
theoretical
basis
Typical
characterization
methods
introduced,
their
technical
characteristics
analyzed.
Furthermore,
performance
enhancements
endowed
by
including
more
efficient
harvesting,
electronics,
impedance
matching
material
strategies,
introduced.
Finally,
challenges
future
opportunities
modulation
summarized.
Journal of Hazardous Materials Advances,
Journal Year:
2023,
Volume and Issue:
10, P. 100266 - 100266
Published: Feb. 26, 2023
Increasing
demand
for
fuels
and
chemicals,
exacerbated
by
factors
such
as
overpopulation,
the
threat
of
global
warming,
scarcity
fossil
resources,
puts
a
strain
on
our
resource
system
necessitates
development
sustainable
innovative
chemical
industry
strategies.
Due
to
abundance
food
waste
that
have
been
generated
globally,
supply
chain
has
emerged
with
significant
potential
use
raw
material
in
production
chemicals.
In
general,
wastes
can
be
classified
into
various
categories
depending
upon
their
nature,
i.e.,
they
"intentional"
or
"unintentional",
other
hand,
also
"avoidable",
"partially
avoidable"
"unavoidable".
The
complete
study
focuses
entire
realm
wastage
major
highlight
this
review
article
is
recent
textile
biofuels
areas
bring
novel
technologies
are
now
being
employed
valorize
products
yield
useful
products.
This
iterates
about
practices
(e.g.,
fiber
materials
from
wastes)
significance
not
just
making
related
food,
but
it
implies
positive
effects
these
environment
economy
general.
prospects
perspectives
management
fruit
real-time
practical
application
future
generations
highlighted.
Nano Materials Science,
Journal Year:
2024,
Volume and Issue:
6(4), P. 484 - 494
Published: Jan. 12, 2024
A
feasible
approach
to
rectify
the
world's
energy
demand
using
sustainable
development
of
adequate
generation
and
storage
technologies
in
a
single
channel.
In
this
respect,
we
made
holistic
with
bi-functional
electrode
material
perform
effectively
applications.
MoS2
nanosheets
were
produced
by
eco-friendly
method
reduced
graphene
oxide
is
used
prepared
carbon
soot
which
derived
from
castor
oil.
The
rGO
combined
simple
sonication
method.
as-prepared
sample
was
introduced
supercapacitor
DSSC
application.
combination
MoS2@rGO
provides
an
enhanced
conversion
efficiency
11.81
%
reproducibility
also
studied.
Further,
fabricate
asymmetric
investigate
its
real-time
device
maximum
power
density
(1666.6
mW/kg)
(25.69
mWh/Kg)
at
1
A/g.
holds
cyclic
stability
81.4
%
for
5000
cycles
it
powered
up
LED
4
min.