首页 | 本学科首页   官方微博 | 高级检索  
     检索      


Growth velocity and the topography of Ni-Zn binary alloy electrodeposits
Authors:M Hiane  J Ebothé
Institution:(1) Unité de Thermique et d'Analyse Physique - LMET, UPRES EA n 2061, UFR Sciences Exactes, Université de Reims, BP 138, 21 rue Clément Ader, 51685 Reims Cedex 02, France, FR
Abstract:We show that the electrodeposition of Ni-Zn alloys at the lowest growth velocities, v < 0.5μm/s, exclusively proceeds from an abnormal co-deposition phenomenon. The growth process in this v region greatly depends on the initial Co2+] concentration of the film deposition bath. A theoretical approach of this process including the role of the saturation surface roughness of the alloy, , leads to an estimation of the transport properties of the ad-atoms involved during the deposit formation. Their surface diffusion coefficient varying between 1.76×10-10 and 2.40×10-8 cm-2/s exhibits a minimal value, D s = 2.10×10-10 cm-2/s located between v = 0.17 and 0.35μm/s. The spatial scaling analysis of the local roughness, σ, examined according to the power-law σ≈L α reveals that the resulting roughness exponents concurs with the Kardar-Parisi-Zhang dynamics including the restricted surface diffusion. Two main v regions leads to different fractal textural features of the alloy film surface. Below 0.10 μm/s, the roughness exponent obtained is α≈ 0.6, depicting a limited ad-atom mobility. Over v = 0.30μm/s, this exponent stabilises at α≈ 0.82, indicating an increase of the surface diffusion. Received 16 August 2000 and Received in final form 20 June 2001
Keywords:PACS  81  15  Aa Theory and models of film growth –  68  35  Ct Interface structure and roughness –  61  82  Bg Metals and alloys
本文献已被 SpringerLink 等数据库收录!
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号