Nanoscale,
Journal Year:
2023,
Volume and Issue:
15(24), P. 10189 - 10205
Published: Jan. 1, 2023
Water-stable
metal–organic
frameworks
(MOFs):
adsorbents
to
remove
heavy
metal
ions
with
excellent
stability.
MOFs
from
different
functionalization
strategies
enhance
the
removal
performance
of
MOF
adsorbents.
Separation and Purification Technology,
Journal Year:
2023,
Volume and Issue:
320, P. 124144 - 124144
Published: May 24, 2023
As
a
result
of
serious
pollution
in
the
water
environment,
sewage
disposal
has
been
receiving
lot
attention
from
industry.
Metal-organic
frameworks
(MOFs)
attract
interest
adsorption
and
separation
due
to
their
complex
structures
easily
adjustable
pore
sizes.
Magnetic
MOFs
inheriting
advantages
both
large
surface
area
easy
recovery
have
great
potentials
pollutants.
This
paper
reviews
recent
research
progress
on
ions,
dyes
other
contaminants
by
different
types
(magnetic
non-magnetic
MOFs)
magnetic
composites
(Fe3O4@MOF)
aqueous
environments.
The
factors
affecting
pollutants,
thermodynamic
kinetic
effects
are
discussed
with
detailed
examples.
Finally,
challenges
opportunities
for
further
development
elucidated.
Desalination and Water Treatment,
Journal Year:
2024,
Volume and Issue:
319, P. 100446 - 100446
Published: May 31, 2024
Waterborne
heavy
metals
pose
significant
threats
to
both
the
environment
and
public
health,
causing
neurological
damage,
developmental
disorders,
organ
cancer.
It
is
essential
address
contamination
of
various
water
bodies
by
these
hazardous
substances
due
their
persistent
nature
lack
biodegradability.
This
review
thoroughly
explores
traditional
modern
strategies
utilized
remedy
sources
contaminated
with
evaluates
effectiveness
potential
scalability
each
method.
A
literature
survey
reveals
several
effective
for
removing
from
water:
adsorption,
flotation,
ion
exchange,
chemical
precipitation,
membrane-based
filtration,
coagulation,
flocculation,
phytoremediation,
electrochemical
methods.
In
our
examination,
we
discussed
agents/adsorbents
used,
efficiency
removal
technique,
operating
conditions,
intrinsic
advantages
disadvantages
approach.
Summarizing
key
findings,
noted
a
focus
on
adsorption
techniques;
however,
challenges
include
selectively
diverse
ions,
prolonged
retention
times,
cycling
stability.
While
membrane
methods
are
practical,
issues
like
large-volume
sludge
formation
exist.
Although
electrical-based
appear
promising,
solutions
needed
industrial-scale
separation
as
well.
Prioritizing
real
wastewater
samples
in
studies
crucial.
Future
research
should
emphasize
eco-friendly,
cost-effective
MedComm – Oncology,
Journal Year:
2024,
Volume and Issue:
3(1)
Published: March 1, 2024
Abstract
Rapid
growth
in
nanoparticles
(NPs)
as
delivery
systems
holds
vast
promise
to
promote
therapeutic
approaches
for
cancer
treatment.
Presently,
a
diverse
array
of
NPs
with
unique
properties
have
been
developed
overcome
different
challenges
and
achieve
sophisticated
routes
enhancement
series
therapies.
Inspiring
advances
achieved
the
field
therapy
using
NPs.
In
this
review,
we
aim
summarize
up‐to‐date
progression
addressing
various
challenges,
expect
elicit
novel
potential
opportunities
alternatively.
We
first
introduce
sorts
NP
technologies,
illustrate
their
mechanisms,
present
applications.
Then,
achievements
made
by
break
obstacles
delivering
cargoes
specific
sites
through
particular
are
highlighted,
including
long‐circulation,
tumor
targeting,
responsive
release,
subcellular
localization.
subsequently
retrospect
recent
research
treatments
from
single
therapy,
like
chemotherapy,
combination
chemoradiotherapy,
integrative
therapy.
Finally,
perspectives
impact
on
oncology
discussed.
believe
review
can
offer
deeper
understanding