Advanced Materials,
Год журнала:
2024,
Номер
unknown
Опубликована: Ноя. 6, 2024
During
the
reaction
process
in
lithium-sulfur
batteries,
Lewis
acidic
lithium
polysulfides
(LiPSs)
affect
ion
distribution
and
overall
electrolyte
stability,
degrading
battery
performance
product
(e.g.,
Li
Advanced Materials,
Год журнала:
2023,
Номер
36(21)
Опубликована: Июль 21, 2023
Abstract
Chemotherapy
is
widely
recognized
as
an
effective
approach
for
treating
cancer
due
to
its
ability
eliminate
cells
using
chemotherapeutic
drugs.
However,
traditional
chemotherapy
suffers
from
various
drawbacks,
including
limited
solubility
and
stability
of
drugs,
severe
side
effects,
low
bioavailability,
drug
resistance,
challenges
in
tracking
treatment
efficacy.
These
limitations
greatly
hinder
widespread
clinical
application.
In
contrast,
supramolecular
chemotherapy,
which
relies
on
host–guest
interactions,
presents
a
promising
alternative
by
offering
highly
efficient
minimally
toxic
anticancer
delivery.
this
review,
overview
recent
advancements
based
interactions
provided.
The
significant
role
it
plays
guiding
therapy
emphasized.
Drawing
wealth
cutting‐edge
research,
herein,
timely
valuable
resource
individuals
interested
the
field
or
therapy,
presented.
Furthermore,
review
contributes
progression
toward
Accounts of Chemical Research,
Год журнала:
2022,
Номер
55(23), С. 3417 - 3429
Опубликована: Ноя. 16, 2022
ConspectusHyaluronic
acid
(HA),
which
contains
multiple
carboxyl,
hydroxyl,
and
acetylamino
groups
is
an
agent
that
targets
tumors,
has
drawn
great
attention
in
supramolecular
diagnosis
treatment
research.
It
can
not
only
assemble
directly
with
macrocyclic
host–guest
complexes
through
hydrogen
bonding
electrostatic
interactions
but
also
be
modified
compounds
or
functional
guest
molecules
by
amidation
reaction
used
for
further
assembly.
Macrocycles
play
a
main
role
the
construction
of
drug
carriers,
targeted
imaging
agents,
hydrogels,
such
as
cyclodextrins
cucurbit[n]urils,
encapsulate
photosensitizers,
drugs,
other
via
interactions.
Therefore,
formed
assemblies
respond
to
various
stimuli,
enzymes,
light,
electricity,
magnetism
controlled
delivery,
enhance
luminescence
intensity
assembly,
improve
loading
capacity.
In
addition,
nanosupramolecular
assembly
HA
biocompatibility
reduce
toxicity
side
effects,
cell
permeability;
thus,
extensive
application
value
biomedical
This
Account
mainly
focuses
on
based
HA,
especially
their
biological
applications
progress
field,
these
include
(i)
guest-modified
pyridinium-,
adamantane-,
peptide-,
functional-group-modified
along
cyclodextrin
cucurbit[n]uril
assemblies;
(ii)
macrocycle-modified
derivatives
guests;
(iii)
direct
between
unmodified
cyclodextrin-
cucurbit[n]uril-based
complexes.
Particularly,
we
discussed
important
HA-based
roles
included
improving
water
solubility
efficacy
hydrophobic
enhancing
luminescent
assemblies,
inducing
room
temperature
phosphorescence
providing
energy
transfer
systems,
constructing
multi-stimulus-responsive
situ
formation
hydrogels.
Additionally,
believe
obtaining
in-depth
knowledge
encompasses
many
challenges
regarding
wound
healing,
soft
materials
would
certainly
contribute
rapid
development
treatment.
Advanced Materials,
Год журнала:
2023,
Номер
35(40)
Опубликована: Июнь 26, 2023
Information
encryption
technologies
are
very
important
for
security,
health,
commodity,
and
communications,
etc.
Novel
information
mechanisms
materials
desired
to
achieve
multimode
reprogrammable
encryption.
Here,
a
supramolecular
strategy
is
demonstrated
multimodal,
erasable,
reprogrammable,
reusable
by
reversibly
modulating
fluorescence.
A
butyl-naphthalimide
with
flexible
ethylenediamine
functionalized
β-cyclodextrin
(N-CD)
utilized
as
fluorescent
responsive
ink
printing
or
patterning
on
polymer
brushes
dangling
adamantane
group
grafted
hydrogels.
The
photoluminescent
naphthalimide
moiety
bonded
β-CD
entrapped
in
the
cavity.
Its
fluorescence
highly
weakened
cavity
recovers
after
being
expelled
from
competing
guest
molecule
emit
bright
green
photoluminescence
under
UV.
Experiments
theoretical
calculations
suggest
π-π
stacking
ICT
primary
mechanism
naphthalimides
assembly
fluorescence,
which
can
be
quenched
through
insertion
of
conjugated
molecules
recover
removing
insert.
Such
reversible
quenching
recovering
used
repeated
writing,
erasing,
re-writing
information.
Supramolecular
recognition
hydrogel
shape
memory
further
combined
dual-encryption.
This
study
provides
novel
develop
smart
improved
security
broad
applications.
Advanced Materials,
Год журнала:
2024,
Номер
36(18)
Опубликована: Янв. 25, 2024
Abstract
Long‐lived
and
highly
efficient
room
temperature
phosphorescence
(RTP)
materials
are
in
high
demand
for
practical
applications
lighting
display,
security
signboards,
anti‐counterfeiting.
Achieving
RTP
aqueous
solutions,
near‐infrared
(NIR)
emission,
NIR‐excited
crucial
bio‐imaging,
but
these
goals
pose
significant
challenges.
Supramolecular
self‐assembly
provides
an
effective
strategy
to
address
the
above
problems.
This
review
focuses
on
recent
advances
enhancement
of
via
supramolecular
self‐assembly,
covering
four
key
aspects:
small
molecular
cocrystals,
macrocyclic
hosts
guests,
multi‐stage
self‐assembly.
not
only
highlights
progress
areas
also
underscores
prominent
challenges
associated
with
developing
materials.
The
resulting
strategies
development
high‐performance
discussed,
aiming
satisfy
biomedical
science.
Chemical Reviews,
Год журнала:
2023,
Номер
123(24), С. 13966 - 14037
Опубликована: Ноя. 22, 2023
Phosphorescence,
characterized
by
luminescent
lifetimes
significantly
longer
than
that
of
biological
autofluorescence
under
ambient
environment,
is
great
value
for
biomedical
applications.
Academic
evidence
fluorescence
imaging
indicates
virtually
all
metrics
(sensitivity,
resolution,
and
penetration
depths)
are
improved
when
progressing
into
wavelength
regions,
especially
the
recently
reported
second
near-infrared
(NIR-II,
1000–1700
nm)
window.
Although
emission
probes
does
matter,
it
not
clear
whether
guideline
"the
wavelength,
better
effect"
still
suitable
developing
phosphorescent
probes.
For
tissue-specific
bioimaging,
long-lived
probes,
even
if
they
emit
visible
phosphorescence,
enable
accurate
visualization
large
deep
tissues.
studies
dealing
with
bioimaging
tiny
architectures
or
dynamic
physiopathological
activities,
prerequisite
rigorous
planning
long-wavelength
being
aware
cooperative
contribution
long
wavelengths
improving
spatiotemporal
depth,
sensitivity
bioimaging.
In
this
Review,
emerging
molecular
engineering
methods
room-temperature
phosphorescence
discussed
through
lens
photophysical
mechanisms.
We
highlight
roles
from
to
NIR-II
windows
toward
bioapplications.
To
appreciate
such
advances,
challenges
prospects
in
rapidly
growing
described.
Limited
by
preparation
time
and
ligand
solubility,
synthetic
protocols
for
cyclodextrin-based
metal-organic
framework
(CD-MOF),
as
well
subsequent
derived
materials
with
improved
stability
properties,
still
remains
a
challenge.
Herein,
an
ultrafast,
environmentally
friendly,
cost-effective
microwave
method
is
proposed,
which
induced
graphene
oxide
(GO)
to
design
CD-MOF/GOs.
This
applicable
technique
can
control
the
crystal
size
of
CD-MOFs
from
macro-
nanocrystals.
CD-MOF/GOs
are
investigated
new
type
supramolecular
adsorbent.
It
selectively
adsorb
dye
molecule
methylene
green
(MG)
owing
synergistic
effect
between
hydrophobic
nanocavity
CDs,
abundant
O-containing
functional
groups
GO
in
composites.
Following
high
temperature
calcination,
resulting
N,
S
co-doped
porous
carbons
exhibit
capacitance
501
F
g-1
at
0.5
A
,
stable
cycling
90.1%
capacity
retention
after
5000
cycles.
The
carbon
exhibits
good
electrochemical
performance
due
its
surface
containing
numerous
electrochemically
active
sites
adsorption
carbonization.
strategy
incorporating
variety
molecules
into
optimizes
properties
their
materials,
furthering
development
toward
fabrication
zeitgeisty
high-performance
energy
storage
devices.