Red-, orange-, and green-emitting integrated optoelectronic sources are demonstrated by transfer printing blue InGaN µLEDs onto ultra-thin glass platforms functionally enhanced with II-VI colloidal quantum dots (CQDs). The forward optical power conversion efficiency of these heterogeneously integrated devices is, respectively, 9%, 15%, and 14% for a blue light absorption over 95%. The sources are demonstrated in an orthogonal frequency division multiplexed (OFDM) visible light communication link reaching respective data transmission rates of 46 Mbps, 44 Mbps and 61 Mbps
The properties and performance of CdSSe/ZnS colloidal quantum dot composite materials for use as InG...
We report free space visible light communication using InGaN sources, namely micro-LEDs and a laser ...
Funding: EPSRC through the Program grant ’Ultra-parallel visible light communications (UP-VLC)’ (EP/...
Red-, orange-, and green-emitting integrated optoelectronic sources are demonstrated by transfer pri...
Red-, orange-, and green-emitting integrated optoelectronic sources are demonstrated by transfer pri...
We demonstrate an integrated color-converting device by transfer printing blue-emitting micro-sized ...
This paper reports the utilization of colloidal semiconductor quantum dots as color converters for ...
This paper reports the utilization of colloidal semiconductor quantum dots as color converters for G...
This paper reports the utilization of colloidal semiconductor quantum dots as color converters for G...
This paper reports the utilization of colloidal semiconductor quantum dots as color converters for G...
We report free space visible light communication using InGaN sources, namely micro-LEDs and a laser ...
We demonstrate an integrated color-converting device by transfer printing blue-emitting micro-sized ...
We report free space visible light communication using InGaN sources, namely micro-LEDs and a laser ...
The work presented in this thesis focuses on the transfer printing of InGaN-based blue emitting ligh...
The work presented in this thesis focuses on the transfer printing of InGaN-based blue emitting ligh...
The properties and performance of CdSSe/ZnS colloidal quantum dot composite materials for use as InG...
We report free space visible light communication using InGaN sources, namely micro-LEDs and a laser ...
Funding: EPSRC through the Program grant ’Ultra-parallel visible light communications (UP-VLC)’ (EP/...
Red-, orange-, and green-emitting integrated optoelectronic sources are demonstrated by transfer pri...
Red-, orange-, and green-emitting integrated optoelectronic sources are demonstrated by transfer pri...
We demonstrate an integrated color-converting device by transfer printing blue-emitting micro-sized ...
This paper reports the utilization of colloidal semiconductor quantum dots as color converters for ...
This paper reports the utilization of colloidal semiconductor quantum dots as color converters for G...
This paper reports the utilization of colloidal semiconductor quantum dots as color converters for G...
This paper reports the utilization of colloidal semiconductor quantum dots as color converters for G...
We report free space visible light communication using InGaN sources, namely micro-LEDs and a laser ...
We demonstrate an integrated color-converting device by transfer printing blue-emitting micro-sized ...
We report free space visible light communication using InGaN sources, namely micro-LEDs and a laser ...
The work presented in this thesis focuses on the transfer printing of InGaN-based blue emitting ligh...
The work presented in this thesis focuses on the transfer printing of InGaN-based blue emitting ligh...
The properties and performance of CdSSe/ZnS colloidal quantum dot composite materials for use as InG...
We report free space visible light communication using InGaN sources, namely micro-LEDs and a laser ...
Funding: EPSRC through the Program grant ’Ultra-parallel visible light communications (UP-VLC)’ (EP/...