We present an in situ x-ray absorption study of hydrogen absorption into the bulk of an electrode material while it is operating in an electrochemical cell. The active material is an overstoichiometric AB(2)-type alloy, namely, Zr(V0.29Ni0.71)(3), With a cubic C15 Laves phase structure. Hydrogen absorption induces both structural and electronic changes due to the bonding between interstitial H atoms and each alloy element. The role of each element is revealed, allowing us to determine the inert role of Ni atoms and the dominant effect of the H-V interaction on the hydride formation process. Comparison between the alloyed element behavior and the II affinity of each pure element allows us to determine the influence of structural and alloying effects on bonding formation.
In situ x-ray absorption study of Zr(V0.29Ni0.71)(3) hydride electrodes
AGOSTINO, Raffaele Giuseppe;G. LIBERTI;FORMOSO, Vincenzo;
2000-01-01
Abstract
We present an in situ x-ray absorption study of hydrogen absorption into the bulk of an electrode material while it is operating in an electrochemical cell. The active material is an overstoichiometric AB(2)-type alloy, namely, Zr(V0.29Ni0.71)(3), With a cubic C15 Laves phase structure. Hydrogen absorption induces both structural and electronic changes due to the bonding between interstitial H atoms and each alloy element. The role of each element is revealed, allowing us to determine the inert role of Ni atoms and the dominant effect of the H-V interaction on the hydride formation process. Comparison between the alloyed element behavior and the II affinity of each pure element allows us to determine the influence of structural and alloying effects on bonding formation.I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.