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, ions, and gases; and (iii) quantitative analysis of deuterium (D) retention and thermal stability of the retained D using TPD. Surfaces will be exposed to ion beams with well-controlled energies and
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determination of the flux and fluence of incident atoms, ions, and gases; and (iii) quantitative analysis of deuterium (D) retention and thermal stability of the retained D using TPD. Surfaces will be exposed
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production for lithium-ion batteries, ii) understanding and controlling interfaces for lithium-metal batteries, and iii) synthesis and characterization of catalysts for plasma-assisted catalysis. Research
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production for lithium-ion batteries, ii) understanding and controlling interfaces for lithium-metal batteries, and iii) synthesis and characterization of catalysts for plasma-assisted catalysis. Research
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of surface-bound species. Typically for utilizing incident ions, a differentially pumped ion source is used, but for higher ion fluxes, an ECR plasma ion source with ion extraction grids is used that may be
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processes and novel materials in several research thrusts: i) development of advanced manufacturing processes for low-cost battery cathode active materials production for lithium-ion batteries, ii