Visible Light Communications (VLC) is a promising new technology which could offer higher data transmission rates than existing broadband RF/microwave wireless technologies. In this paper, we show that a blend of semiconducting polymers can be used to make a broadband, balanced color converter with a very high modulation bandwidth to replace commercial phosphors in hybrid LEDs for visible light communications. The resulting color converter exploits partial Förster energy transfer in a blend of the highly fluorescent green emitter BBEHP-PPV and orange-red emitting MEH-PPV. We quantify the efficiency of the photoinduced energy transfer from BBEHP-PPV to MEH-PPV, and demonstrate modulation bandwidths (electrical-electrical) of ∼200 MHz, which ...
Star‐shaped organic semiconductors with boron dipyrromethene (BODIPY) cores are color‐conversion mat...
Star‐shaped organic semiconductors with boron dipyrromethene (BODIPY) cores are color‐conversion mat...
Visible light communication (VLC) has emerged as a cutting-edge high-speed communication technology,...
Visible Light Communications (VLC) is a promising new technology which could offer higher data trans...
Visible Light Communications (VLC) is a promising new technology which could offer higher data trans...
We report a study of blends of semiconducting polymers as saturated red color converters to replace ...
For white light data communications, broad-band light emitting materials are required, whose emissio...
This letter presents a novel technique to achieve high-speed visible light communication (VLC) using...
This letter presents a novel technique to achieve high-speed visible light communication (VLC) using...
Star‐shaped organic semiconductors with boron dipyrromethene (BODIPY) cores are color‐conversion mat...
Star‐shaped organic semiconductors with boron dipyrromethene (BODIPY) cores are color‐conversion mat...
Visible light communication (VLC) has emerged as a cutting-edge high-speed communication technology,...
Visible Light Communications (VLC) is a promising new technology which could offer higher data trans...
Visible Light Communications (VLC) is a promising new technology which could offer higher data trans...
We report a study of blends of semiconducting polymers as saturated red color converters to replace ...
For white light data communications, broad-band light emitting materials are required, whose emissio...
This letter presents a novel technique to achieve high-speed visible light communication (VLC) using...
This letter presents a novel technique to achieve high-speed visible light communication (VLC) using...
Star‐shaped organic semiconductors with boron dipyrromethene (BODIPY) cores are color‐conversion mat...
Star‐shaped organic semiconductors with boron dipyrromethene (BODIPY) cores are color‐conversion mat...
Visible light communication (VLC) has emerged as a cutting-edge high-speed communication technology,...