Toxicology Research,
Год журнала:
2024,
Номер
14(1)
Опубликована: Дек. 31, 2024
Abstract
Since
the
Industrial
Revolution,
ecological
damage,
ecosystem
disruption,
and
climate
change
acceleration
have
frequently
resulted
from
human
advancement
at
price
of
environment.
Due
to
rise
in
illnesses,
Industry
6.0
calls
for
a
renewed
dedication
sustainability
with
latest
technologies.
Focused
research
creative
solutions
are
needed
achieve
UN
Sustainable
Development
Goals
(SDGs),
especially
3,
9,
13,
14,
15,
17.
A
promising
sustainable
technology
enhancing
healthcare
while
reducing
environmental
effect
is
Metal
Organic
Frameworks
(MOFs).
MOFs
perfect
drug
administration
because
their
high
surface
areas,
adjustable
pore
sizes,
remarkable
drug-loading
capacities.
They
created
by
combining
advanced
artificial
intelligence,
intelligent
manufacturing,
quantum
computing.
Researchers
can
create
functional
groups
or
ligands
that
bind
selectively
target
cells
tissues,
minimizing
off-target
effects,
thanks
distinct
benefits
families
like
MIL,
HKUST,
UiO,
ZIF
etc.
offer
targeted
delivery.
Combining
other
nanomaterials
results
multipurpose
systems
handle
challenging
biomedical
issues.
Despite
its
promise,
there
still
issues
MOFs’
possible
toxicity
long-term
stability
physiological
settings.
To
advance
medicinal
applications,
these
problems
must
be
resolved.
increase
usefulness
medicine
critically
analysing
limitations
putting
up
alternatives.
The
creation
technologies
(additive
manufacturing
etc.)
delivery
prime
example
how
scientific
stewardship
may
coexist
provide
advantageous
both
people
Microplastics,
Год журнала:
2025,
Номер
4(1), С. 11 - 11
Опубликована: Март 1, 2025
Microplastics
(MPs)
are
currently
a
serious
environmental
problem,
primarily
due
to
their
persistence
in
the
environment,
low
concentration,
and
difficulty
detection
disposal.
MPs
have
also
been
detected
humans
shown
be
harmful.
Although
there
methodologies
for
recovery
or
elimination
most
water
treatment
plants,
significant
portion
still
bypasses
these
systems.
It
is
this
percentage
that
we
must
try
eliminate.
In
addition
finding
new
of
MPs,
it
important
find
materials
adapted
process.
context,
metal–organic
frameworks
(MOFs)
high-versatility
compounds
can
synthesized
using
different
techniques
obtain
with
properties,
such
as
porosity,
morphology,
conductivity,
etc.
These
adsorb
ways,
electrostatic
interaction,
bond
formation,
etc.,
they
obtained
by
containing
metals
catalyze
reactions
formation
highly
reactive
species
oxidize
MPs.
This
review
examines
how
MOF
gained
attention
adsorption-based
removal
discusses
problems
associated
possible
solutions.
Journal of Materials Chemistry A,
Год журнала:
2025,
Номер
unknown
Опубликована: Янв. 1, 2025
Metal-organic
frameworks
(MOFs)
are
porous,
crystalline
materials
with
high
surface
area,
adjustable
porosity,
and
structural
tunability,
making
them
ideal
for
diverse
applications.
However,
traditional
experimental
computational
methods
have
limited
scalability
interpretability,
hindering
effective
exploration
of
MOF
structure-property
relationships.
To
address
these
challenges,
we
introduce,
the
first
time,
a
category-specific
topological
learning
(CSTL),
which
combines
algebraic
topology
chemical
insights
robust
property
prediction.
The
model
represents
structures
as
simplicial
complexes
incorporates
elemental
categorizations
to
enable
balanced,
interpretable
machine
study.
By
integrating
persistent
homology,
CSTL
captures
both
global
local
characteristics,
rendering
multi-dimensional,
descriptors
that
support
predictive
accuracy
robustness
across
eight
datasets,
outperforming
all
previous
results.
This
alignment
features
enhances
power
interpretability
CSTL,
advancing
understanding
relationships
MOFs
promoting
efficient
material
discovery.
Chemical Communications,
Год журнала:
2025,
Номер
unknown
Опубликована: Янв. 1, 2025
This
review
presents
the
classification
of
defective
MOFs,
fabrication
strategies,
characterization
techniques,
and
performance
in
water
treatment
applications.
Angewandte Chemie,
Год журнала:
2025,
Номер
unknown
Опубликована: Март 11, 2025
Abstract
Capillary
is
a
handy
tool
for
transferring,
mixing,
and
storing
small
volumes
of
liquid.
Here,
we
show
that
the
stepwise
dipping
host
guest
solutions
into
capillary
allows
efficient
preparation,
crystallization,
X‐ray
analysis
various
host–guest
complexes.
The
crystals
formed
in
capillaries
are
comparable
quality
to
those
grown
regular
flasks
subjected
without
being
removed
from
capillary.
We
further
apply
technique
crystalline
sponge
method,
practical
domain
chemistry,
successfully
overcoming
several
technical
issues.