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Company Information:

Name: Soluxra, LLC
Address: UW Fluke Hall, Box 352141
4000 Mason Road, Suite 304
Seattle, WA 98195-
Located in HUBZone: No
Woman-Owned: No
Minority-Owned: No
Phone: N/A

Award Totals:

Program/Phase Award Amount ($) Number of Awards
SBIR Phase I $100,000.00 1
STTR Phase I $249,835.00 2
STTR Phase II $749,898.00 1

Award List:

Development and scale-up of very low-cost, light-weight, flexible solar cells

Award Year / Program / Phase: 2011 / SBIR / Phase I
Agency: DOD
Principal Investigator: Hin-Lap Yip, Director – (206) 359-0683
Award Amount: $100,000.00
Abstract:
The overall objective of the proposal is to use an integrated approach combining material, interface, device, and process engineering to demonstrate high-performance OPV module fabricated from all-solution and ambient process. The specific objectives of the program can be enumerated as follows: 1)… More

Scale-up and Optimization of High-Performance Organic Electro-Optic Material Systems for Photonic Device Applications

Award Year / Program / Phase: 2012 / STTR / Phase I
Agency / Branch: DOD / USAF
Research Institution: University of Washington
Principal Investigator: Jingdong Luo, Director of Photonic Products – (206) 676-2105
Award Amount: $99,840.00
RI Contact: Alex K. Jen
Abstract:
ABSTRACT: In this project, Soluxra, LLC will team up with Prof. Alex Jen at the University of Washington to streamline the scale-up synthesis for highly efficient organic electro-optic (EO) material systems, and optimize their processing conditions to ensure device end-users will get high EO… More

High specific power and cost effective solar array for spacecraft, lighter than air vehicles, and UAVs

Award Year / Program / Phase: 2014 / STTR / Phase I
Agency / Branch: DOD / USAF
Research Institution: University of Washington
Principal Investigator: Alex K. Jen, Professor – (206) 543-2626
Award Amount: $149,995.00
RI Contact: Lynette F. Arias
Abstract:
ABSTRACT: The objective of this STTR proposal is to develop and demonstrate a radiation hardened organic-based solar array adaptable to nanosatellites which exhibits flexibility, variable topology, high specific power, and low cost. Organic photovoltaics (OPVs) represent a transformative technology… More

SCALE-UP SYNTHESIS AND OPTIMIZATION OF HIGH-PERFORMANCE ELECTRO-OPTIC POLYMER SYSTEMS FOR ADVANCED PHOTONIC DEVICES

Award Year / Program / Phase: 2014 / STTR / Phase II
Agency / Branch: DOD / USAF
Research Institution: University of Washington
Principal Investigator: Jingdong Luo, Director of Photonic Products – (206) 676-2105
Award Amount: $749,898.00
RI Contact: Carol Rhodes
Abstract:
ABSTRACT: High-performance organic electro-optic (OEO) polymers can enable the development of advanced EO technologies for achieving significantly reduced energy consumption and bandwidth enhancement in future information and communication technologies. One of the most critical steps in developing… More