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Conrad R Stoldt

from Wheat Ridge, CO
Age ~53

Conrad Stoldt Phones & Addresses

  • 3205 Independence Ct, Wheat Ridge, CO 80033 (303) 238-5857
  • Golden, CO
  • Tucson, AZ
  • 2800 Kalmia Ave, Boulder, CO 80301 (303) 440-7392
  • El Prado, NM
  • Golden, CO
  • Englewood, CO
  • Ames, IA
  • 1032 Pine St APT 11, Boulder, CO 80302

Work

Position: Sales Occupations

Education

Degree: Associate degree or higher

Resumes

Resumes

Conrad Stoldt Photo 1

Founder And Principal Scientist

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Location:
Denver, CO
Industry:
Higher Education
Work:
Nature Scientific Reports
Member of the Editorial Board In Chemistry

Solid Power
Founder and Principal Scientist

University of Colorado Boulder
Associate Professor of Mechanical Engineering

Uc Berkeley Jan 2000 - May 2002
Postdoctoral Research Associate
Education:
Iowa State University 1995 - 1999
Doctorates, Doctor of Philosophy, Chemistry
University of Colorado Boulder 1990 - 1994
Bachelors, Bachelor of Arts, Chemistry
Skills:
Materials Science
Nanomaterials
Nanotechnology
Chemistry
Materials
Semiconductors
Engineering
Solar Cells
Electrochemistry
Spectroscopy
Physics
Lithium Ion Batteries
Scanning Electron Microscopy
R&D
Thin Films
Mechanical Engineering
Afm
Interests:
Family
Photovoltaics
Gardening
Lithium Ion Batteries
Solid State Interface Engineering
Personal
Nanomaterials Synthesis
Semiconductor Corrosion/Etching
Conrad Stoldt Photo 2

Conrad Stoldt

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Publications

Us Patents

Galvanic Porous Silocon Composites For Nanoenergetics And Monolithically Integrated Ignitor

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US Patent:
20130149460, Jun 13, 2013
Filed:
Dec 13, 2012
Appl. No.:
13/713043
Inventors:
Luke J. Currano - Columbia MD, US
Wayne A. Churaman - Arnold MD, US
Conrad R. Stoldt - Denver CO, US
Assignee:
U.S. ARMY RESEARCH LABORATORY ATTN: RDRL-LOC-I - Adelphi MD
International Classification:
F23Q 7/22
US Classification:
427532, 219270
Abstract:
Porous silicon (PS) films composed of pores with diameters less than 3 nm are fabricated using a galvanic etching approach that does not require an external power supply. A highly reactive, nanoenergetic composite is then created by impregnating the nanoscale pores with the strong oxidizer, sodium perchlorate (NaClO). The combustion propagation velocity of the energetic composite is measured using microfabricated diagnostic devices in conjunction with high-speed optical imaging up to 930,000 frames per second. Combustion velocities averaging 3,050 m/s are observed for PS films with specific areas of 840 m/g and porosities of about 65-67%. Galvanic etching may also be used to fabricate other porous silicon morphologies and also strong oxidizers other than NaClOcould be used to create a nanoenergetic porous silicon composite.

Non-Invasive Detection Of Complement-Mediated Inflammation Using Cr2-Targeted Nanoparticles

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US Patent:
20110286938, Nov 24, 2011
Filed:
Feb 4, 2010
Appl. No.:
13/148028
Inventors:
Joshua M. Thurman - Greenwood Village CO, US
Natalie Serkova - Denver CO, US
Conrad Stoldt - Denver CO, US
Brian Larsen - Denver CO, US
Assignee:
The Regents of the University of Colorado - Denver CO
International Classification:
A61K 49/16
A61P 37/00
A61K 49/08
US Classification:
424 9323, 424 932
Abstract:
Methods of non-invasive imaging of complement-mediated inflammation are provided. Compositions including CR-targeted ultrasmall superparamagnetic nanoparticles or aggregates thereof for use with those methods are also provided.

Lithium All-Solid-State Battery

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US Patent:
20220223907, Jul 14, 2022
Filed:
Feb 15, 2022
Appl. No.:
17/672555
Inventors:
- Denver CO, US
Se-Hee Lee - Louisville CO, US
Conrad Stoldt - Golden CO, US
International Classification:
H01M 10/0562
H01M 4/36
H01M 4/58
H01M 10/052
H01M 10/0525
H01M 4/38
Abstract:
An all-solid-state lithium battery, thermo-electromechanical activation of LiS in sulfide based solid state electrolyte with transition metal sulfides, and electromechanical evolution of a bulk-type all-solid-state iron sulfur cathode, are disclosed. An example all-solid-state lithium battery includes a cathode having a transition metal sulfide mixed with elemental sulfur to increase electrical conductivity. In one example method of in-situ electromechanically synthesis of Pyrite (FeS) from Sulfide (FeS) and elemental sulfur (S) precursors for operation of a solid-state lithium battery, FeS+S composite electrodes are cycled at moderately elevated temperatures.

Lithium All-Solid-State Battery

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US Patent:
20200099095, Mar 26, 2020
Filed:
Nov 27, 2019
Appl. No.:
16/698066
Inventors:
- Denver CO, US
Se-Hee Lee - Louisville CO, US
Conrad Stoldt - Golden CO, US
International Classification:
H01M 10/0562
H01M 10/052
H01M 4/36
H01M 4/58
H01M 10/0525
H01M 4/38
Abstract:
An all-solid-state lithium battery, thermo-electromechanical activation of LiS in sulfide based solid state electrolyte with transition metal sulfides, and electromechanical evolution of a bulk-type all-solid-state iron sulfur cathode, are disclosed. An example all-solid-state lithium battery includes a cathode having a transition metal sulfide mixed with elemental sulfur to increase electrical conductivity. In one example method of in-situ electromechanically synthesis of Pyrite (FeS) from Sulfide (FeS) and elemental sulfur (S) precursors for operation of a solid-state lithium battery, FeS+S composite electrodes are cycled at moderately elevated temperatures.

Lithium All-Solid-State Battery

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US Patent:
20170331148, Nov 16, 2017
Filed:
Dec 27, 2016
Appl. No.:
15/391442
Inventors:
- Denver CO, US
Se-Hee Lee - Louisville CO, US
Conrad Stoldt - Golden CO, US
International Classification:
H01M 10/0562
H01M 4/38
H01M 4/58
H01M 10/0525
Abstract:
An all-solid-state lithium battery, thermo-electromechanical activation of LiS in sulfide based solid state electrolyte with transition metal sulfides, and electromechanical evolution of a bulk-type all-solid-state iron sulfur cathode, are disclosed. An example all-solid-state lithium battery includes a cathode having a transition metal sulfide mixed with elemental sulfur to increase electrical conductivity. In one example method of in-situ electromechanically synthesis of Pyrite (FeS) from Sulfide (FeS) and elemental sulfur (S) precursors for operation of a solid-state lithium battery, FeS+S composite electrodes are cycled at moderately elevated temperatures.

Lithium All-Solid-State Battery

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US Patent:
20140377664, Dec 25, 2014
Filed:
Jan 9, 2013
Appl. No.:
14/371500
Inventors:
- Denver CO, US
Se-Hee Lee - Louisville CO, US
Conrad Stoldt - Golden CO, US
International Classification:
H01M 10/0562
H01M 4/58
H01M 4/36
H01M 10/0525
US Classification:
429305, 429322, 2521821, 320137, 429221
Abstract:
An all-solid-state lithium battery, thermo-electromechanical activation of LiS in sulfide based solid state electrolyte with transition metal sulfides, and electromechanical evolution of a bulk-type all-solid-state iron sulfur cathode, are disclosed. An example all-solid-state lithium battery includes a cathode having a transition metal sulfide mixed with elemental sulfur to increase electrical conductivity. In one example method of in-situ electomechanical synthesis of Pyrite (FeS) from Sulfide (FeS) and elemental sulfur (S) precursors for operation of a solid-state lithium battery, FeS+S composite electrodes are cycled at moderately elevated temperatures.
Conrad R Stoldt from Wheat Ridge, CO, age ~53 Get Report