EXAMINATION OF FACTORS INFLUENCING PROMOTION OF H ABSORPTION INTO METALS BY SITE-BLOCKING ELEMENTS

被引:48
作者
JERKIEWICZ, G [1 ]
BORODZINSKI, JJ [1 ]
CHRZANOWSKI, W [1 ]
CONWAY, BE [1 ]
机构
[1] UNIV OTTAWA,DEPT CHEM,OTTAWA,ON K1N 6N5,CANADA
关键词
D O I
10.1149/1.2048409
中图分类号
O646 [电化学、电解、磁化学];
学科分类号
081704 ;
摘要
Renewed interest in absorption of H and D into transition metals has been stimulated by current work on metal-hydride anodes for rechargeable batteries and by the intense interest in recently studied anomalous phenomena associated with absorption of D into Pd. One principal problem in this field is how site-blocking elements (SEE), also called ''catalyst poisons'' (P), co-adsorbed with H on transition metal H hosts, usually substantially promote the absorption of H into a number of such metals, yet such poisons are known to inhibit cathodic H-2 evolution and diminish surface coverage by H, the intermediate in the latter process and the source of the absorbed H. These effects of catalyst poisons in promoting H absorption into host metals are examined in terms of effects of competitive adsorption between the poison and H at the surface. Conventional ideas about these effects are inconsistent with information on diminutionn of H coverage caused by competitive adsorption of poisons. Consideration of various possibilities indicates that the enhancement of H absorption by SBEs can arise only on account of direct interaction effects and long-range indirect electronic charge-density effects. Numerical simulation calculations are given on the competitive chemisorption of H vis a vis a poison; P, in relation to the configurational contribution to the Gibbs energy of the adlayer, H + P. Numerically derived, three-dimensional diagrams are presented to illustrate these effects. The role of lateral interaction effects among adsorbed H and P species in the thermodynamics and kinetics of H absorption is also examined.
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页码:3755 / 3763
页数:9
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