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公开(公告)号:US20170032149A1
公开(公告)日:2017-02-02
申请号:US15223181
申请日:2016-07-29
Inventor: Louise C. SENGUPTA , Pierre-Alain S. Auroux , Don A. HARRIS , Myeongseob KIM , Tadd C. KIPPENY , Somnath SENGUPTA , Igor I. SMOLYANINOV , Laura A. SWAFFORD , Chen J. ZHANG
CPC classification number: G06F21/70 , C01B33/02 , G06F21/75 , G06F2221/2143
Abstract: The system and method for destroying compromised objects, including electronic devices. The system and method utilizes a barrier separating two reagents that can be rapidly mixed to form a base when desired. The system and method have a barrier configured to be triggered remotely. The barrier comprises an aluminum foil layer.
Abstract translation: 破坏物体的系统和方法,包括电子设备。 该系统和方法利用隔离两种试剂的屏障,当需要时可以快速混合以形成碱。 系统和方法具有被配置为被远程触发的障碍。 屏障包括铝箔层。
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公开(公告)号:US20190041305A1
公开(公告)日:2019-02-07
申请号:US15667667
申请日:2017-08-03
Inventor: Michael J. BOWERS, II , John E. KING , Tadd C. KIPPENY
Abstract: A method for detection and identification of a chemical using a preconcentrator to collect a sample of the chemical, process said sample of the chemical, and introduce said processed chemical into a chemical analysis instrument for the detection of and identification of the chemical. A system for detecting and identifying a chemical comprising a preconcentrator having at least dual concentrating elements.
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公开(公告)号:US20180151764A1
公开(公告)日:2018-05-31
申请号:US15799138
申请日:2017-10-31
Inventor: Pierre-Alain S. AUROUX , Louise C. SENGUPTA , John E. KING , Idan MANDELBAUM , James A. STOBIE , Laura A. SWAFFORD , Chen J. ZHANG , Christopher S. BADORREK , Michael J. BOWERS, II , Myeongseob KIM , Tadd C. KIPPENY , Don A. HARRIS
IPC: H01L31/0352 , H01L27/146 , H01L27/30
CPC classification number: H01L31/035218 , B82Y20/00 , H01L27/14652 , H01L27/307
Abstract: A photon-activated quantum dot capacitor and method of fabrication. A photon-activated quantum dot capacitor photodetector having a read only integrated circuit; and a photon-activated quantum dot capacitor chip hybridized with the read only integrated circuit, wherein said photon-activated quantum dot capacitor chip comprises colloidal quantum dots that detect photons as a change in a dielectric constant of the colloidal quantum dots of the photon-activated quantum dot capacitor chip, including the further implementation of a photodetector.
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公开(公告)号:US20190060865A1
公开(公告)日:2019-02-28
申请号:US15690358
申请日:2017-08-30
Inventor: Louise C. SENGUPTA , Pierre-Alain S. AUROUX , Christopher S. BADORREK , Michael J. BOWERS, II , Myeongseob KIM , John E. KING , Tadd C. KIPPENY , Laura A. SWAFFORD
IPC: B01J20/20 , C01B32/318 , B01J20/34 , B01D53/04
Abstract: In the method for scrubbing a chemical from a medium, wherein the improvement comprises the steps of using a carbide derived carbon to adsorb the chemical which may later be released by heating. The carbide derived carbon may be a powder, a fiber, a solid foam, a mesh, or other solid form. The carbide derived carbon can adsorb a chemical in the gaseous, liquid, particulate, or aerosol phase.
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公开(公告)号:US20210318272A1
公开(公告)日:2021-10-14
申请号:US17268551
申请日:2018-09-05
Inventor: Michael J. BOWERS, II , Don A. HARRIS , Tadd C. KIPPENY
Abstract: A system and method for utilizing a carbide-derived carbon (CDC) fiber in solid-phase micro extraction. Optically pumping the carbide-derived carbon (CDC) fiber, as compared to using thermal desorption, enhances performance of the system. CDC provides for a broad based sorbent that is insensitive to high humidity. Optical pumping may be done axially or radially on a modified gas chromatography needle. In some cases, staged, or pulsed, optical pumping is used to drive off solvent or other lower boiling compounds first and then the desorption of the remaining analytes is cleaner and the instrumentation is less likely to be overloaded.
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公开(公告)号:US20190060866A1
公开(公告)日:2019-02-28
申请号:US15690507
申请日:2017-08-30
Inventor: Michael J. BOWERS, II , Pierre-Alain S. AUROUX , Christopher S. BADORREK , Myeongseob KIM , John E. KING , Tadd C. KIPPENY
IPC: B01J20/20 , C01B32/318 , B01J20/28 , B01J20/282 , B01J20/286 , G01N1/40
Abstract: The system and method of using carbide derived carbon as a sorbent material in high humidity environments. In some cases, the sorbent material is used for breath analysis. In some cases, the sorbent material is used in a gas mask. In certain cases, the sorbent material is functionalized for detection or capture of particular chemicals.
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