Abstract:There are often major economic and logistical challenges in getting woody biomass out of the forest or off the farm in a manner, which justifies the costs of harvesting and transportation. Raw cellulosic biomass, woody or otherwise, is moist and bulky, which limits its cost-effective transport to… more
Abstract:Electrical lighting consumes ~22% of the electricity in the U.S., which amounts to more than a third of total energy consumption. With the increasing effectiveness of light emitting diodes (LEDs), the long-term forecast is for the eventual replacement of most traditional lights, both incandescent… more
Abstract:This Small Business Innovation Research Phase I project is aimed at the development of a new consolidated bioprocess to generate hydrogen from inexpensive cellulosic biomass in a single bioelectrochemical reactor. Demand for hydrogen is increasing but a renewable, inexpensive supply does not exist.… more
Abstract:Traditional diode end pumped single mode fiber laser designs are limited in terms laser power pumping and energy extraction. Double clad large mode area fibers are easier to scale up and typically utilize fiber delivered diode pumping at various laser gain length intervals in order to overcome… more
Abstract:This Small Business Innovation Research (SBIR) Phase II project will result in the commercialization of high power, large area, deep UV LEDs based on a novel vertically conducting geometry that is arbitrarily scalable. AlInGaN based deep UV-B LEDs (Ã½Ã½ = 300 - 340 nm) have recently been… more
Abstract:This award is funded under the American Recovery and Reinvestment Act of 2009 (Public Law 111-5). This Small Business Innovation Research Phase II project will result in the development of a novel semiconductor growth technique to produce low dislocation density III-nitride AlInGaN substrate… more
Abstract:The goal of the Phase I program is to demonstrate the feasibility of our technical approach to grow AlInN lattice Matched Barrier HEMTs on low defect Bulk and quasi-bulk III-Nitride Substrates (GaN). This will be accomplished using our pulsed MOCVD growth technique to deposit AlInN films at a… more
Abstract:The goal of the Phase I program is to demonstrate the feasibility of a high-voltage, high-temperature insulating gate AlInN-GaN/i-SiC enhancement-mode HEMT to serve as the basic building block of a power converter/inverter. Our technical approach is to use lattice matched AlInN-GaN epilayers in… more
Abstract:DESCRIPTION (provided by applicant): Since early development of polymethyl methacrylate bone cement (PMMA-BC), there have been many efforts to develop alternative compositions to circumvent some of its clinical shortcomings, which include (1) monomer cytot oxicity; (3) inability to form strong… more
Abstract:DESCRIPTION (provided by applicant): Bioswellable Absorbable Monofilament Sutures Abstract Phase I study was intended and did demonstrate the feasibility of applying a new concept in macromolecular chain design to develop novel, synthetic, bioswellable, ab
sorbable, compliant, coated and uncoated… more
Abstract:This award is funded under the American Recovery and Reinvestment Act of 2009 (Public Law 111-5). This Small Business Innovation Research (SBIR) Phase II project aims to commercialize and expand the application of piezopolymer nanocomposite technology. Piezoelectric materials are an alternative… more
Abstract:Develop economical industrial-scale process for production of bulk gamma radiation detectors based on composite material(s) that have characteristics comparable to large single-crystal detectors. DESCRIPTION: The current generations of moderate- and high-resolution detectors for gamma radiation… more
Abstract:DESCRIPTION (provided by applicant): This Phase I SBIR project is aimed at developing a novel type of anticancer drugs, termed SNX9- class compounds. These compounds have a dual activity: (i) inhibition of a transcriptional regulatory pathway that endows g
rowth-arrested tumor cells and… more
Abstract:This Small Business Innovation Research Project will develop an innovative approach for epitaxial deposition of high quality thick (Al)(In)(Ga)N layers with low dislocation density. Accomplishment of the proposed effort will provide technology for next generation UV LED structures, which currently… more
Abstract:This Small Business Innovation Research (SBIR) Phase I project will develop innovative water disinfection unit based on solid state UV LED lamps for compact point-of-use and point-of-entry water purification reactors. Accomplishment of the proposed research will result in compact semiconductor LED… more
Abstract:This Small Business Innovation Research Project will develop next generation high power deep ultraviolet light emitting diodes with high quality p-type AlInGaN layers with digital doping control. Advancements in AlInGaN material system and device technology have resulted in commercially viable UV… more
Abstract:We propose to develop a novel hybrid circuit approach combining CMOS and two terminal crosspoint nanodevices with a novel interface consisting of an array of pins with nanometer scale tips. Our CMOL approach will allow the fabrication of ultra-dense integrated circuits (up to 10^12 active devices… more
Abstract:SETI proposes to develop GaN and Si based multicolor FIR/THz cameras with detector elements and readout, signal processing electronics integrated on a single chip.
The active detector elements will be submicron gated channels with 2 dimensional electron gas (2DEG). The devices with gated 2DEG… more
Abstract:We propose to develop and commercialize novel normally-off III-Nitride insulated gate heterostructure field effect transistor (MOSHFET) for power converters. Based on our experience in high power insulated gate III-N HFET development, we strongly believe that this device is the most promising for… more
Abstract:Sensor Electronic Technology, Inc. will develop, prototype and start pilot production of new class of high power deep ultraviolet (DUV) light-emitting diodes (LED) using our proprietary and patented technology and novel technical approaches demonstrated during Phase I effort. Target performance… more
Abstract:SETI proposes to develop and commercialize innovative technology for AlInN/GaN heterostructure growth and metal-oxide-semiconductor heterostructure field effect transistor (MOSHFET) fabrication for the high power X-band operation. Our technical approach is based on the proprietary and patented… more
Abstract:We propose to develop and commercialize III-Nitride insulated gate MOSHFET-based power converters for radar T/R modules power supplies. Based on our experience in high power III-N MOSHFET development and figures of merit discussed below, we strongly believe that this device is the most promising for… more
Abstract:We propose to carry out research and development of highly efficient broadband cryogenic switches using voltage controlled 2D electron gas in III-Nitride heterostructure field-effect transistors (HFETs). Due to extremely high electron density in the 2D channel formed at the AlGaN/GaN interface,… more
Abstract:This Small Business Innovation Research Phase I project tests a new robust and scalable route to manufacture Selah Dots(TM), a biologically and environmentally benign and competitive alternative to heavy metal based quantum dot imaging agents. Selah Dots(TM) exhibit strong photoluminescence in the… more
Abstract:This award is funded under the American Recovery and Reinvestment Act of 2009 (Public Law 111-5). This Small Business Technology Transfer Phase I project is to develop a novel technology for the large-scale sorting of single walled carbon nanotubes (SWNTs) by diameter and electronic type. An… more
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