Next Nanotechnology,
Journal Year:
2024,
Volume and Issue:
5, P. 100059 - 100059
Published: Jan. 1, 2024
This
study
investigates
integrating
pixelated
colloidal
quantum
dot
(QD)
layers
into
LCDs
to
enhance
color
conversion
and
pixel-level
enrichment
for
future
display
technologies.
We
developed
miniature
prototypes
with
pixel-sized
QD
color-converter
seamlessly
integrated
the
backlight
unit
(BLU).
The
prototypes,
featuring
red-
green-emitting
pixels
a
single
blue
LED
on
glass
substrates,
underwent
rigorous
environmental
tests
such
as
Thermal
Shock
Test
(TST),
Cycle
(TCT),
High
Temperature
Humidity
(HHT),
Low
(LTT).
assessment
covered
uniformity
of
light,
spectral
radiance,
CIE
coordinates,
revealing
insights
performance
through
analysis
pre-
post-environmental
tests.
Despite
decrease
in
luminance,
exhibited
resilience
against
rapid
temperature
variations,
enduring
thermal
shock,
cycle
without
cracking.
However,
high-temperature
high-humidity
conditions
revealed
susceptibility.
Low-temperature
stress
demonstrated
stable
gamut
coordinates
no
discernible
shifts.
research
fills
notable
gap
existing
literature
by
conducting
comprehensive
utilization
technologies,
providing
valuable
stability,
durability,
reliability
displays.
Next Nanotechnology,
Journal Year:
2024,
Volume and Issue:
5, P. 100059 - 100059
Published: Jan. 1, 2024
This
study
investigates
integrating
pixelated
colloidal
quantum
dot
(QD)
layers
into
LCDs
to
enhance
color
conversion
and
pixel-level
enrichment
for
future
display
technologies.
We
developed
miniature
prototypes
with
pixel-sized
QD
color-converter
seamlessly
integrated
the
backlight
unit
(BLU).
The
prototypes,
featuring
red-
green-emitting
pixels
a
single
blue
LED
on
glass
substrates,
underwent
rigorous
environmental
tests
such
as
Thermal
Shock
Test
(TST),
Cycle
(TCT),
High
Temperature
Humidity
(HHT),
Low
(LTT).
assessment
covered
uniformity
of
light,
spectral
radiance,
CIE
coordinates,
revealing
insights
performance
through
analysis
pre-
post-environmental
tests.
Despite
decrease
in
luminance,
exhibited
resilience
against
rapid
temperature
variations,
enduring
thermal
shock,
cycle
without
cracking.
However,
high-temperature
high-humidity
conditions
revealed
susceptibility.
Low-temperature
stress
demonstrated
stable
gamut
coordinates
no
discernible
shifts.
research
fills
notable
gap
existing
literature
by
conducting
comprehensive
utilization
technologies,
providing
valuable
stability,
durability,
reliability
displays.