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A study on the key factors affecting the sensibility of bismuth deposits toward Sn2+: Effects of bismuth microstructures on the Sn 2+ pre-deposition
Journal article   Peer reviewed

A study on the key factors affecting the sensibility of bismuth deposits toward Sn2+: Effects of bismuth microstructures on the Sn 2+ pre-deposition

Chien-Hung Lien, Chi-Chang Hu, Kuo-Hsin Chang, Yi-Da Tsai and David Shan-Hill Wang
Electrochimica Acta, Vol.105, pp.665-670
2013

Abstract

Bismuth-film electrode Grain size Preferred orientation ratio Sn2+ sensing Stripping
The pre-deposition of Sn following with the square-wave anodic stripping voltammetric (SWASV) analysis is employed to determine the Sn 2+ -sensing ability of bismuth-film electrodes (BFEs). The influences of Bi microstructures, such as grain size, preferred orientation ratio between Bi(1 1 0) and Bi(0 1 2) (denoted as f), and average roughness factor (Ra) of Bi deposits on the Sn 2+ -sensing ability, are investigated. The preferred orientation ratio is a key factor determining the Sn 2+ -sensing ability of BFEs meanwhile a synergistic effect between grain size and f on enhancing the current density of Sn 2+ sensing is obtained when f is above 0.11. The crystalline facet of Bi(1 1 0) favorable for pre-depositing Sn is the main reason enhancing the Sn 2+ sensing of Bi deposits. Thus, this work shows that Sn 2+ sensing through stripping of pre-deposited Sn on BFEs does not follow the mechanism of forming Bi-alloy amalgams since the successful pre-deposition of trace Sn 2+ on Bi strongly depends on the effective exposure of crystalline facet of Bi(1 1 0). © 2013 Elsevier Ltd. All rights reserved.

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