1974
DOI: 10.1007/bf00890236
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Conduction electron paramagnetic resonance of colloidal lithium in ultraviolet irradiated LiH single crystals

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“…This gross decomposition is associated with volume changes of 25 per cent or more. [23][24][25][26] Generally, hydrogen gas (H 2 ) is believed to form due to irradiation stripping of electrons off adjacent H atoms in the lithium hydride crystal lattice, allowing the atoms to bond to each other, forming relatively stable H 2 . The formed H 2 either stays in position, or diffuses to form bubbles (or leaves the sample), or recombines with Li to form lithium hydride.…”
Section: Potential Irradiation Swelling Mechanismsmentioning
confidence: 99%
“…This gross decomposition is associated with volume changes of 25 per cent or more. [23][24][25][26] Generally, hydrogen gas (H 2 ) is believed to form due to irradiation stripping of electrons off adjacent H atoms in the lithium hydride crystal lattice, allowing the atoms to bond to each other, forming relatively stable H 2 . The formed H 2 either stays in position, or diffuses to form bubbles (or leaves the sample), or recombines with Li to form lithium hydride.…”
Section: Potential Irradiation Swelling Mechanismsmentioning
confidence: 99%