Small,
Journal Year:
2024,
Volume and Issue:
unknown
Published: Nov. 12, 2024
Sonodynamic
therapy
is
confronted
with
the
low
acoustic
efficiency
of
sonosensitizers,
and
nanozymes
are
accompanied
by
intrinsic
catalytic
activity.
Herein,
to
increase
piezopotential
N-type
piezoelectric
semiconductors,
P-N
heterojunction
designed
inhibit
screening
effect
(PSE)
electron
utilization
enhance
nanozyme
P-type
Cu
Chemical Society Reviews,
Journal Year:
2023,
Volume and Issue:
52(9), P. 3170 - 3214
Published: Jan. 1, 2023
An
exclusive
review
focusing
on
catalysts
exhibiting
the
dinuclear
metal
synergistic
catalysis
(DMSC)
effect
for
energy
conversion
reactions
is
presented.
ACS Nano,
Journal Year:
2024,
Volume and Issue:
18(19), P. 12049 - 12095
Published: May 2, 2024
Cancer,
as
one
of
the
leading
causes
death
worldwide,
drives
advancement
cutting-edge
technologies
for
cancer
treatment.
Transition-metal-based
nanozymes
emerge
promising
therapeutic
nanodrugs
that
provide
a
reference
therapy.
In
this
review,
we
present
recent
breakthrough
First,
comprehensively
outline
preparation
strategies
involved
in
creating
transition-metal-based
nanozymes,
including
hydrothermal
method,
solvothermal
chemical
reduction
biomimetic
mineralization
and
sol–gel
method.
Subsequently,
elucidate
catalytic
mechanisms
(catalase
(CAT)-like
activities),
peroxidase
(POD)-like
oxidase
(OXD)-like
activities)
superoxide
dismutase
(SOD)-like
along
with
their
activity
regulation
such
morphology
control,
size
manipulation,
modulation,
composition
adjustment
surface
modification
under
environmental
stimulation.
Furthermore,
elaborate
on
diverse
applications
anticancer
therapies
encompassing
radiotherapy
(RT),
chemodynamic
therapy
(CDT),
photodynamic
(PDT),
photothermal
(PTT),
sonodynamic
(SDT),
immunotherapy,
synergistic
Finally,
challenges
faced
by
are
discussed
alongside
future
research
directions.
The
purpose
review
is
to
offer
scientific
guidance
will
enhance
clinical
based
transition
metals.
Small Methods,
Journal Year:
2024,
Volume and Issue:
unknown
Published: Feb. 22, 2024
Abstract
Developing
efficient
electrocatalysts
is
significant
for
the
commercial
application
of
electrocatalytic
water
splitting.
2D
materials
have
presented
great
prospects
in
electrocatalysis
their
high
surface‐to‐volume
ratio
and
tunable
electronic
properties.
Particularly,
MXene
emerges
as
one
most
promising
candidates
electrocatalysts,
exhibiting
unique
advantages
hydrophilicity,
outstanding
conductivity,
exceptional
stability.
However,
it
suffers
from
lacking
catalytic
active
sites,
poor
oxidation
resistance,
easy
stacking,
leading
to
a
suppression
performance.
Combining
with
other
an
effective
way
tackle
aforementioned
drawbacks.
In
this
review,
focus
on
accurate
synthesis
2D/2D
MXene‐based
catalysts
toward
First,
mechanisms
splitting
relative
properties
preparation
methods
MXenes
are
introduced
offer
basis
catalysts.
Then,
various
categories
catalysts,
such
wet‐chemical,
phase‐transformation,
electrodeposition,
etc.,
systematically
elaborated.
Furthermore,
in‐depth
investigations
conducted
into
internal
interactions
structure‐performance
relationship
Finally,
current
challenges
future
opportunities
proposed
development
aiming
enlighten
these
nanomaterials
Carbon Energy,
Journal Year:
2025,
Volume and Issue:
unknown
Published: March 20, 2025
ABSTRACT
Carbon
electrocatalyst
materials
based
on
lignocellulosic
biomass
with
multi‐components,
various
dimensions,
high
carbon
content,
and
hierarchical
morphology
structures
have
gained
great
popularity
in
electrocatalytic
applications
recently.
Due
to
the
catalytic
deficiency
of
neutral
atoms,
usage
single
lignocellulosic‐based
electrocatalysis
involving
energy
storage
conversion
presents
unsatisfactory
applicability.
However,
atomic‐level
modulation
lignocellulose‐based
can
optimize
electronic
structures,
charge
separation,
transfer
processes,
so
forth,
which
results
substantially
enhanced
performance
carbon‐based
catalysts.
This
paper
reviews
recent
advances
rational
design
as
electrocatalysts
from
an
perspective,
such
self/external
heteroatom
doping
metal
modification.
Then,
through
systematic
discussion
principles
reaction
mechanisms
catalysts,
prepared
catalysts
rechargeable
batteries
are
reviewed.
Finally,
challenges
improving
prospects
diverse
review
contributes
synthesis
strategy
via
modulation,
turn
promotes
lignocellulose
valorization
for
conversion.
RSC Advances,
Journal Year:
2024,
Volume and Issue:
14(37), P. 27092 - 27109
Published: Jan. 1, 2024
Stabilization
and
immobilization
of
Pd(0)
nanoparticles
over
organotellurium
ligand
functionalized
graphene
oxide:
catalytic
application
in
Suzuki–Miyaura
C–O
coupling.