Armis Biopharma Apr 2016 - Aug 2018
Senior Chemist
Armis Biopharma Apr 2016 - Aug 2018
Director Research and Development
Colorado State University Jul 2012 - Jul 2016
Research Scientist
Microchemica Sep 2015 - May 2016
Senior Chemist
Scripps Institution of Oceanography Jan 2011 - Jun 2012
Postdoctoral Researcher
Education:
Colorado State University 2005 - 2011
Doctorates, Doctor of Philosophy, Philosophy, Chemistry
Rose - Hulman Institute of Technology 2001 - 2005
Bachelors, Bachelor of Science, Chemical Engineering, Chemistry
Skills:
Analytical Chemistry Chemistry Scientific Writing Chemical Engineering Technical Writing High Performance Liquid Chromatography Labview Microsoft Excel Microsoft Word Microsoft Powerpoint Creative Problem Solving Capillary Electrophoresis Microfluidics Statements of Work Research and Development Research Coatings Science Endnote Statistical Data Analysis Uv/Vis Spectroscopy Mass Spectrometry Standard Operating Procedure Laboratory Skills Instrumentation Microsoft Office Html Physical Chemistry Wet Chemistry Reaction Kinetics Multidisciplinary Design Nmr Spectroscopy Ion Chromatography Conductivity Surface Chemistry Originlab Polymer Chemistry Maple Technical Presentations Science Communication Laboratory Safety Laboratory Techniques Analytical Instruments Instrumental Analysis Liquid Chromatography Mass Spectrometry Nuclear Magnetic Resonance Water Quality Ftir Work Instructions
Susanne Vera Hering - Berkeley CA, US Gregory Stephen Lewis - Berkeley CA, US Steven Russel Spielman - Oakland CA, US Charles Sherman Henry - Fort Collins CO, US Scott Douglas Noblitt - Fort Collins CO, US
International Classification:
G01N 27/447
US Classification:
204453, 204604, 204601
Abstract:
This technology is a method and apparatus for the semi-continuous measurement of the concentration of constituents of airborne particles which couples a laminar flow, water condensation particle collector to a microfluidic device for assay of particle chemical composition by electrophoresis. The technology has been used for the assay of sulfates, nitrates, chlorides, and organic acids contained in fine and submicrometer atmospheric particles. For these compounds the apparatus and method described is capable of one-minute time resolution at concentrations at the level of micrograms of analyte species per cubic meter of air. Extension to other analytes is possible.
Antimicrobial, Disinfecting, And Wound Healing Compositions And Methods For Producing And Using The Same
The present invention relates to antimicrobial, disinfecting, and wound healing compositions and methods for producing and using the same. The compositions may comprise one or more of a peracid, a hydroperoxide, a bis(hydroperoxide), or an epoxide.
Antimicrobial, Disinfecting And Wound Healing Compositions And Methods For Producing And Using Same
- Fort Collins CO, US Scott Noblitt - Fort Collins CO, US
Assignee:
Armis Biopharma, Inc. - Fort Collins CO
International Classification:
A61K 31/327 A61K 33/06 A61K 9/00 A61P 17/02
Abstract:
The present invention relates to antimicrobial, disinfecting, and wound healing compositions and methods for producing and using the same. The compositions may comprise one or more of a peracid, a hydroperoxide, a bis(hydroperoxide), or an epoxide.
Methods And Devices To Reduce The Risk Of Infection
Articles for reducing the risk of infection, bearing, or containing an antimicrobial composition containing a solid-phase peroxyxcarboxylic acid metal salt are provided. Methods of reducing the risk of infection using the antimicrobial composition are also provided.
Antimicrobial, Disinfecting, And Wound Healing Compositions And Methods For Producing And Using The Same
The present invention relates to antimicrobial, disinfecting, and wound healing compositions and methods for producing and using the same. The compositions may comprise one or more of a peracid, a hydroperoxide, a bis(hydroperoxide), or an epoxide.