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Company Information:

Company Name:
Enogetek, Inc.
Address:
2055 Albany Post Rd.
Suite AT-6
Croton-on-Hudson, NY
Phone:
(914) 290-4747
URL:
EIN:
203484835
DUNS:
605406706
Number of Employees:
5
Woman-Owned?:
No
Minority-Owned?:
No
HUBZone-Owned?:
No

Commercialization:

Has been acquired/merged with?:
N/A
Has had Spin-off?:
N/A
Has Had IPO?:
N/A
Year of IPO:
N/A
Has Patents?:
N/A
Number of Patents:
N/A
Total Sales to Date $:
$ 0.00
Total Investment to Date $
$ 0.00
POC Title:
N/A
POC Name:
N/A
POC Phone:
N/A
POC Email:
N/A
Narrative:
N/A

Award Totals:

Program/Phase Award Amount ($) Number of Awards
SBIR Phase I $479,643.00 5
SBIR Phase II $2,249,522.00 3
STTR Phase I $99,823.00 1
STTR Phase II $749,212.00 1

Award List:

SBIR Phase I: A Novel Membrane for Hydrogen Separation

Award Year / Program / Phase:
2006 / SBIR / Phase I
Award Amount:
$99,923.00
Agency:
NSF
Principal Investigator:
Abstract:
This Small Business Innovation Research Phase I project seeks to develop, demonstrate a novel, robust, low cost, high H2 flux, dense composite hydrogen separation membrane technology, which can be used to separate hydrogen gas at high temperature from the gas mixture generated 1) by coal… More

NOVEL TRANSITION METAL OXIDE ANODE FOR HIGH RATE LITHIUM ION BATTERY

Award Year / Program / Phase:
2007 / SBIR / Phase I
Award Amount:
$99,827.00
Agency / Branch:
DOD / OSD
Principal Investigator:
Lin-Feng Li, President and CTO
Abstract:
Military operating in remote locations have increasing demand for man-portable electric power for communications and other advanced electronic devices, which is currently met by Li/SO2 (BA-5590) or Li/MnO2 (BA-2590) primary batteries. In order to substantially reduce the logistic burden and the cost… More

A Novel Oxygen Separation Membrane for Oxygen Production

Award Year / Program / Phase:
2007 / SBIR / Phase I
Award Amount:
$99,940.00
Agency:
DOE
Principal Investigator:
Abstract:
Oxygen is ranked among the top five in the production of commodity chemicals in the U.S. Hence, there is a strong market pull for developing high-energy-efficient, low-cost, high-flux oxygen separation technology. In addition, a pure-oxygen-assisted combustion process also would have implications… More

Metal Air Seawater Battery as the Power Source for High Power Long Endurance Sonobuoy and UAV Sonobuoy Applications

Award Year / Program / Phase:
2008 / SBIR / Phase I
Award Amount:
$79,957.00
Agency / Branch:
DOD / NAVY
Principal Investigator:
Lin-Feng Li, President and CTO
Abstract:
After comparing various power sources, including primary lithium battery, metal air seawater battery and hydrogen fuel cell, we come to the conclusion that magnesium air seawater battery is the best choice for the sonobuoy applications in terms of specific energy, energy density, shelf life, system… More

A NOVEL OXYGEN SEPARATION AND STORAGE APPARATUS FOR UNDERWATER AND HIGH ALTITUDE FUEL CELL APPLICATIONS

Award Year / Program / Phase:
2008 / STTR / Phase I
Award Amount:
$99,823.00
Agency / Branch:
DOD / ARMY
Principal Investigator:
Lin-Feng Li, President and CTO
Research Institution:
UNIV. OF CINCINNATI
RI Contact:
Deborah Galloway
Abstract:
U.S. Military operations have come to depend more and more on unmanned vehicles (unmanned undersea vehicles UUVs and unmanned air vehicles UAVs) to carry out numerous missions. However, the transit distance for many of these missions is often well limited by the energy storage capacity of their… More

A Novel Oxygen Separation Membrane for Oxygen Production

Award Year / Program / Phase:
2008 / SBIR / Phase II
Award Amount:
$749,716.00
Agency:
DOE
Principal Investigator:
Abstract:
The production of oxygen is ranked among the top five commodity chemicals in the U.S. However, low energy efficiencies and high costs are preventing the widespread implementation of traditional oxygen separation technologies. This project will develop and demonstrate a novel, low-cost, high-flux,… More

High Performance Hydroxyl Conductive Membrane For Advanced Rechargeable Alcaline Batteries

Award Year / Program / Phase:
2008 / SBIR / Phase I
Award Amount:
$99,996.00
Agency:
DOE
Principal Investigator:
Abstract:
Increasingly strict environmental regulations, along with surging energy demand and oil prices, have given rise to a growing demand for efficient, clean, and renewable energy sources, such as solar and wind energy. Electricity generated from these renewable sources, however, suffers the drawback of… More

High Performance Hydroxyl Conductive Membrane For Advanced Rechargeable Alcaline Batteries

Award Year / Program / Phase:
2009 / SBIR / Phase II
Award Amount:
$749,980.00
Agency:
DOE
Principal Investigator:
Abstract:
Increasingly, strict environmental regulations, surging energy demand and oil prices, and the proliferation of the internet and electronic devices have given rise to a growing market demand for efficient, clean, and renewable energy sources, such as solar and wind energy. However, the electricity… More

Metal Air Seawater Battery as the Power Source for High Power Long Endurance Sonobuoy and UAV Sonobuoy Applications

Award Year / Program / Phase:
2010 / SBIR / Phase II
Award Amount:
$749,826.00
Agency:
DOD
Principal Investigator:
Lin-Feng Li, President and CTO – (914) 290-4747
Abstract:
After comparing various power sources, including primary lithium battery, metal air seawater battery and hydrogen fuel cell, we come to the conclusion that magnesium air seawater battery is the best choice for the sonobuoy applications in terms of specific energy, energy density, shelf life, system… More

A NOVEL OXYGEN SEPARATION AND STORAGE APPARATUS FOR UNDERWATER AND HIGH ALTITUDE FUEL CELL APPLICATIONS

Award Year / Program / Phase:
2011 / STTR / Phase II
Award Amount:
$749,212.00
Agency / Branch:
DOD / ARMY
Principal Investigator:
Lin-Feng Li, President and CTO – (914) 290-6293
Research Institution:
University of Cincinnati
RI Contact:
Dee Douglas
Abstract:
U.S. Military operations have come to depend more and more on unmanned vehicles (unmanned undersea vehicles UUVs and unmanned air vehicles UAVs) to carry out numerous missions. However, the transit distance for many of these missions is often well limited by the energy storage capacity of their… More