SBIR-STTR Award

High Quantum Efficiency Nanoantenna Enhanced Organic Photodetector
Award last edited on: 9/8/2014

Sponsored Program
SBIR
Awarding Agency
DOD : Navy
Total Award Amount
$79,939
Award Phase
1
Solicitation Topic Code
N112-109
Principal Investigator
Hailiang Zhang

Company Information

Hitron Technologies Inc (AKA: HTI)

851 Corporate Drive Suite 360
Lexington, KY 40503
Location: Single
Congr. District: 06
County: Fayette

Phase I

Contract Number: N68335-12-C-0057
Start Date: 10/19/2011    Completed: 4/19/2012
Phase I year
2012
Phase I Amount
$79,939
Hitron Technologies (HTI) proposes to develop a new solid state, light weight, high quantum efficiency, low noise, and high bandwidth Nanoantenna-Enhanced Organic PhotoDetector (NEOPD), based on an innovative design of nanoantenna and its novel integration with organic photomultiplication (OPM) photodetector. The OPM photodetector alone has already demonstrated its high quantum efficiency of up to 5000%, far exceeding Navy’s requirement of 100% quantum efficiency. To meet the high bandwidth requirement of 100MHz, the thickness of organic photodetection layer will be decreased; meanwhile, the quantum efficiency reduction caused by thinner photodetection layer will be fully compensated by the absorption enhancement induced by the nanoantenna structure fabricated on one metal electrode layer. Additionally, a cross-linkable semiconductor buffer layer in the NEOPD structure is used to minimize the dark current noise for a low noise factor. In Phase-I a one inch size NEOPD prototype with a small portion of nanoantenna area will be developed to demonstrate its feasibility. Nanoantenna will be fabricated by focal ion beam (FIB) milling. In Phase-II, nanoimprint lithography will be adopted for large area nanoantenna fabrication.

Keywords:
Organic Photomultiplication, Organic Photomultiplication, Nanoantenna, Subwavelength, Photodetector, Optical Antenna

Phase II

Contract Number: ----------
Start Date: 00/00/00    Completed: 00/00/00
Phase II year
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Phase II Amount
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