Layer-by-Layer Nanoarchitectonics: A Method for Everything in Layered Structures
Materials,
Год журнала:
2025,
Номер
18(3), С. 654 - 654
Опубликована: Фев. 1, 2025
The
development
of
functional
materials
and
the
use
nanotechnology
are
ongoing
projects.
These
fields
closely
linked,
but
there
is
a
need
to
combine
them
more
actively.
Nanoarchitectonics,
concept
that
comes
after
nanotechnology,
ready
do
this.
Among
related
research
efforts,
into
creating
through
formation
thin
layers
on
surfaces,
molecular
membranes,
multilayer
structures
these
have
lot
implications.
Layered
especially
important
as
key
part
nanoarchitectonics.
diversity
components
used
in
layer-by-layer
(LbL)
assemblies
notable
feature.
Examples
LbL
introduced
this
review
article
include
quantum
dots,
nanoparticles,
nanocrystals,
nanowires,
nanotubes,
g-C3N4,
graphene
oxide,
MXene,
nanosheets,
zeolites,
nanoporous
materials,
sol–gel
layered
double
hydroxides,
metal–organic
frameworks,
covalent
organic
conducting
polymers,
dyes,
DNAs,
polysaccharides,
nanocelluloses,
peptides,
proteins,
lipid
bilayers,
photosystems,
viruses,
living
cells,
tissues.
examples
assembly
show
how
useful
versatile
it
is.
Finally,
will
consider
future
challenges
Язык: Английский
Mechanism of carbon nanotube growth by Fe catalysts in a one-step process
Applied Physics A,
Год журнала:
2025,
Номер
131(3)
Опубликована: Фев. 15, 2025
Язык: Английский
Influence of metal ion doping for the electrochemical performance of NiCo layered double hydroxide nanostructures
Journal of Power Sources,
Год журнала:
2024,
Номер
621, С. 235310 - 235310
Опубликована: Авг. 25, 2024
Язык: Английский
Liquid–Liquid and Liquid–Solid Interfacial Nanoarchitectonics
Molecules,
Год журнала:
2024,
Номер
29(13), С. 3168 - 3168
Опубликована: Июль 3, 2024
Nanoscale
science
is
becoming
increasingly
important
and
prominent,
further
development
will
necessitate
integration
with
other
material
chemistries.
In
words,
it
involves
the
construction
of
a
methodology
to
build
up
materials
based
on
nanoscale
knowledge.
This
also
beginning
concept
post-nanotechnology.
role
belongs
nanoarchitectonics,
which
has
been
rapidly
developing
in
recent
years.
However,
scope
application
nanoarchitectonics
wide,
somewhat
difficult
compile
everything.
Therefore,
this
review
article
introduce
concepts
liquid
interface,
are
keywords
for
organization
functional
systems
biological
systems.
The
target
interfaces
liquid-liquid
liquid-solid
so
on.
Recent
examples
summarized
under
categories
molecular
assembly,
metal-organic
framework
covalent
organic
framework,
living
cell.
addition,
latest
research
interfacial
semiconductor
film
discussed.
final
conclusive
section
summarizes
these
features
discusses
necessary
components
nanoarchitectonics.
Язык: Английский
Materials Nanoarchitectonics for Advanced Devices
Materials,
Год журнала:
2024,
Номер
17(23), С. 5918 - 5918
Опубликована: Дек. 3, 2024
Advances
in
nanotechnology
have
made
it
possible
to
observe
and
evaluate
structures
down
the
atomic
molecular
level.
The
next
step
development
of
functional
materials
is
apply
knowledge
sciences.
This
role
nanoarchitectonics,
which
a
concept
post-nanotechnology.
Nanoarchitectonics
defined
as
methodology
create
using
nanounits
such
atoms,
molecules,
nanomaterials
building
blocks.
very
general
not
limited
or
applications,
thus
nanoarchitecture
applied
many
fields.
In
particular,
evolution
from
nanoarchitecture,
useful
consider
contribution
device
applications.
There
may
be
solution
widely
recognized
problem
integrating
top-down
bottom-up
approaches
design
systems.
With
this
mind,
review
discusses
examples
nanoarchitectonics
developments
advanced
devices.
Some
recent
are
introduced
through
broadly
dividing
them
into
organic
inorganic
nanoarchitectonics.
Examples
include
variety
control
structural
elements,
π-conjugated
structures,
chemical
complex
ligands,
steric
hindrance
effects,
stacking,
isomerization
color
changes
due
external
stimuli,
selective
redox
reactions,
doping
semiconductors
by
electron
transfer
reactions.
Supramolecular
processes
association
intercalation
molecules
also
important
controlling
properties.
often
allows
for
size,
dimension,
shape,
their
associated
physical
properties
can
controlled.
addition,
there
specific
groups
that
suitable
practical
use,
nanoparticles
graphene.
Therefore,
has
more
aspect.
Based
on
these
aspects,
finally
considers
future
further
Язык: Английский