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Phenol was selected as a hydrogen bonding donator.
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Sodium aluminum hydride (NaAlH4) has been selected as a representative reversible hydride for hydrogen storage.
Owing to its proximity to the RXP407 Phe and the lack of hydrogen bonding potential of the corresponding C-domain residue (Val), it was selected as a side-chain for further selective binding exploitation by hydrogen bonding.
Liquid hydrogen at 20 K is selected as a moderator.
Zinc has been selected as a metal as it allows the subsequent generation of hydrogen gas bubbles when exposed to acidic aqueous solutions.
Nafion 117 is selected as a membrane, and the membrane is treated to remove the impurities using hydrogen peroxide (H2O2) and DI water as applied in Hasran et al.'s [17] study.
According to polarity character and hydrogen bond interaction of phenolic compounds, an alcohol solvent was selected as a base extractant, and a kind of alkane compound with a large group is added.
Mutant S119A was selected as a negative control and was designed to disrupt the structural stability of the productive binding mode by eliminating the hydrogen bond between the carbonyl oxygen of CBZ and the S119 side-chain hydroxyl group.
Ammonium hydroxide and 30% hydrogen peroxide (9/1 v/v) was selected as an etchant.
RTB is selected as an example too.
Thus, Mg and Li were selected as activators in the hydrogen generation of the Al H2O reaction conducted on a specially designed experimental facility.
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