铜
化学
电化学
无机化学
冶金
核化学
材料科学
物理化学
电极
作者
Kiho Nishioka,M. Okada,Ryo Kanzaki,Kazuhiro Fukami,Kuniaki Murase
标识
DOI:10.1149/1945-7111/adc2a1
摘要
The electrodeposition of Cu 2 O, represented by the reaction 2Cu(II) + 2OH − +2e → Cu 2 O + H 2 O in alkaline baths containing concentrated lactic acid (approximately 3 mol dm −3 ) as ligands, has been widely studied. In a previous study, such baths were found to generate the complexes [Cu(H −1 L)L] − and [Cu(H −1 L) 2 ] 2− (where L − = CH 3 CH(OH)COO − and H −1 L − = CH 3 CH(O − )COO − ) in a manner dependent on the bath pH in the alkaline region. This work first assessed the stability of these Cu(II)-lactate complexes based on computational chemistry. The formation of these complexes typically requires approximately one day to reach thermodynamic equilibrium, suggesting that other kinetically favorable, metastable complexes may form prior to the equilibrium complexes. Based on titration curves, [CuL 2 (HL)] 0 was identified as the most likely such intermediate and the effect of this complex on deposition orientation was examined. Electrodeposited Cu 2 O obtained from a bath not yet at equilibrium with a pH of approximately 9.5 was randomly oriented whereas deposits from an equilibrated bath showed a preferential 〈100〉 orientation. These findings suggest that bath aging is an essential step in achieving reproducible Cu 2 O electrodeposition. Additionally, modifying the bath preparation method was found to prevent the formation of metastable complexes.
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