Energy & Fuels,
Год журнала:
2024,
Номер
38(21), С. 20155 - 20168
Опубликована: Окт. 10, 2024
In
the
process
of
electrocatalytic
water
splitting,
managing
gaseous
products
is
crucial.
Rapid
gas
diffusion
on
electrode
surface
can
accelerate
mass
transfer,
thereby
enhancing
energy
conversion
efficiency.
recent
years,
regulation
wettability
through
compositional
and
structural
engineering
has
garnered
significant
attention.
this
review,
we
first
introduce
generation
detachment
processes
bubbles
explore
their
impact
transport
transfer
in
water-splitting
reactions,
emphasizing
importance
efficient
improving
catalyst
activity
stability.
Subsequently,
delve
into
fundamental
principles
discuss
design
potential
mechanisms
for
efficiency
chemical
modification,
design,
gradient
design.
Finally,
propose
future
research
directions
field.
Energy & Fuels,
Год журнала:
2024,
Номер
38(21), С. 20155 - 20168
Опубликована: Окт. 10, 2024
In
the
process
of
electrocatalytic
water
splitting,
managing
gaseous
products
is
crucial.
Rapid
gas
diffusion
on
electrode
surface
can
accelerate
mass
transfer,
thereby
enhancing
energy
conversion
efficiency.
recent
years,
regulation
wettability
through
compositional
and
structural
engineering
has
garnered
significant
attention.
this
review,
we
first
introduce
generation
detachment
processes
bubbles
explore
their
impact
transport
transfer
in
water-splitting
reactions,
emphasizing
importance
efficient
improving
catalyst
activity
stability.
Subsequently,
delve
into
fundamental
principles
discuss
design
potential
mechanisms
for
efficiency
chemical
modification,
design,
gradient
design.
Finally,
propose
future
research
directions
field.