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Early-Stage Growth Mechanism and Synthesis Conditions-Dependent Morphology of Nanocrystalline Bi Films Electrodeposited from Perchlorate Electrolyte

Abstract

Bi nanocrystalline films were formed from perchlorate electrolyte (PE) on Cu substrate via electrochemical deposition with different duration and current densities. The microstructural, morphological properties, and elemental composition were studied using scanning electron microscopy (SEM), atomic force microscopy (AFM), and energy-dispersive X-ray microanalysis (EDX). The optimal range of current densities for Bi electrodeposition in PE using polarization measurements was demonstrated. For the first time, it was shown and explained why, with a deposition duration of 1 s, co-deposition of Pb and Bi occurs. The correlation between synthesis conditions and chemical composition and microstructure for Bi films was discussed. The analysis of the microstructure evolution revealed the changing mechanism of the films' growth from pillar-like (for Pb-rich phase) to layered granular form (for Bi) with deposition duration rising. This abnormal behavior is explained by the appearance of a strong Bi growth texture and coalescence effects. The investigations of porosity showed that Bi films have a closely-packed microstructure. The main stages and the growth mechanism of Bi films in the galvanostatic regime in PE with a deposition duration of 1-30 s are proposed.

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References
1.
Vorobjova A, Tishkevich D, Shimanovich D, Zdorovets M, Kozlovskiy A, Zubar T . Electrochemical Behaviour of Ti/AlO/Ni Nanocomposite Material in Artificial Physiological Solution: Prospects for Biomedical Application. Nanomaterials (Basel). 2020; 10(1). PMC: 7022230. DOI: 10.3390/nano10010173. View

2.
Zhang Z, Yu K, Bai D, Zhu Z . Synthesis and Electrochemical Sensing Toward Heavy Metals of Bunch-like Bismuth Nanostructures. Nanoscale Res Lett. 2010; 5(2):398-402. PMC: 2894205. DOI: 10.1007/s11671-009-9495-3. View

3.
Baldrianova L, Svancara I, Sotiropoulos S . Anodic stripping voltammetry at a new type of disposable bismuth-plated carbon paste mini-electrodes. Anal Chim Acta. 2007; 599(2):249-55. DOI: 10.1016/j.aca.2007.07.067. View

4.
McCaffrey J, Mainegra-Hing E, Shen H . Optimizing non-Pb radiation shielding materials using bilayers. Med Phys. 2010; 36(12):5586-94. DOI: 10.1118/1.3260839. View

5.
Yao J, Shao J, Yang G . Ultra-broadband and high-responsive photodetectors based on bismuth film at room temperature. Sci Rep. 2015; 5:12320. PMC: 4508833. DOI: 10.1038/srep12320. View