Development of battery separator material process Interim report
Sterilizable battery separator material preparation process
subject
BATTERY: explore 67 source-linked works published from 1962 to 2026, with original documents and citations.
This collection is a preview while coverage and quality are evaluated.
Includes records with this source-supplied label or an explicit phrase match in their metadata. Matches indicate a mention, not proof that a paper uses a method or tests a material. Source versions are consolidated by DOI.
Sources: osti, nasa. Collection updated 2026-09-15. Counts describe this index, not the complete source archives.
Sterilizable battery separator material preparation process
Heat sterilizable battery separator material prepared from low-density polyethylene film
High energy density primary battery - film formation on cupric fluoride cathodes discharged in organic electrolytes
Sealed heat sterilizable high impact resistant battery for space missions, grafting acrylic acid and polyethylene by irradiation for separator
Dry tape battery concept - cathode and anode research, energy densities, tape cell preparation, and supporting research
Multisweep cyclic voltammetry for electrochemical characterization of systems for secondary battery application
Evaluation of various anode-electrolyte and cathode-electrolyte combinations for high energy density battery
Prismatic and bobbin electrochemical cells for low temperature battery
Identification and characterization of battery active compound structures formed on nickel oxide electrode during charging and discharging
Fabrication and testing of battery separator material of modified polyethylene film
Fabrication and testing of polyethylene battery separator material
Three-day battery capable of operation at temperature of 425 degrees C for use on lunar and planetary probes
Lithium anodes, inorganic and organic cathodes, vacuum-distilled solvents, and methods for sintering cupric fluoride on lightweight metal substrates - development of high energy battery
Low temperature battery - development of pasted plate cathode construction to extend cell life
High energy anode and cathode for dry tape battery - incapsulation of electrolyte - manufacturing and testing of device
High capacity nonaqueous secondary battery development - lithium deposition and cycling, ionic solvation, cathode construction and discharge efficiency, and solvent purification
Cell discharge measurements for dry tape battery couple - anode and cathode development in aqueous and nonaqueous electrolytes
High capacity nonaqueous secondary battery - synthesis and electrochemical studies of dialkyl and diary beryllium compounds, organoberyllium complex salts, and other complex salt solutions