Full metadata
Title
Direct Electrolysis of Lithium on Copper
Description
Lithium metal is a promising anode for the next generation lithium batteries owing to its high capacity (3860 mAh g-1) and the lowest negative reduction potential (-3.04 V). Commercial produced lithium anodes have a native rough surface which deteriorates the cycling performance of the battery. Here, an attempt has been made to deposit lithium on copper from an electrolytic cell consisting of simple electrolyte of pyridine and lithium chloride at room temperature. Water is known to react aggressively with the lithium metal, however in the electrochemical plating process, it has a significant beneficial effect in catalyzing the electrochemical reactions. The effect of trace amounts of water was investigated in air as well as in controlled atmosphere of argon, nitrogen, breathing grade dry air and ultra-zero dry air. The electrochemical products examined by Fourier transform infrared spectroscopy revealed the deposition might require the reduction of pyridine to facilitate the reduction of the lithium salt. Purity of the lithium film was determined by inductively coupled plasma mass spectrometry.
Date Created
2019
Contributors
- Pode, Gayatri (Author)
- Newman, Nathan (Thesis advisor)
- Marshall, Daniel (Committee member)
- Tao, Meng (Committee member)
- Arizona State University (Publisher)
Topical Subject
Resource Type
Extent
41 pages
Language
eng
Copyright Statement
In Copyright
Primary Member of
Peer-reviewed
No
Open Access
No
Handle
https://hdl.handle.net/2286/R.I.53759
Level of coding
minimal
Note
Masters Thesis Materials Science and Engineering 2019
System Created
- 2019-05-15 12:31:45
System Modified
- 2021-08-26 09:47:01
- 3 years 2 months ago
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