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Coherent microradiology directly observes a critical cathode-anode distance effect in localized electrochemical deposition
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Coherent microradiology directly observes a critical cathode-anode distance effect in localized electrochemical deposition

S.K. Seol, J.M. Yi, X. Jin, C.C. Kim, J.H. Je, W.L. Tsai, P.C. Hsu, Y. Hwu, C.H. Chen, L.W. Chang, …
Electrochemical and Solid-State Letters, 卷.7(9)
2004

摘要

Chemical Engineering (all) Materials Science (all) Physical and Theoretical Chemistry Electrochemistry Electrical and Electronic Engineering
Localized electrochemical deposition (LECD) is an emerging technology for inexpensive and effective fabrication of high-aspect-ratio microstructure of diverse materials. Microradiology with coherent X-rays enabled study of this process in real-time. This led to the discovery of a fundamental role of the microelectrode-structure distance: for short distances the deposition rate increases dramatically but the product becomes porous. This role is explained qualitatively with the interplay between metal-ion diffusion and migration in the deposition process. © 2004 The Electrochemical Society. All rights reserved.

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