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http://hdl.handle.net/11189/9278| Title: | Towards the development of a novel bipolar-based battery in aqueous electrolyte: Evaluation of the electrochemical properties of NiCu based hydroxide electrodes fabricated on Ni–mesh and graphite composite current collectors | Authors: | Zide, Dorcas Felix, Cecil Oosthuysen, Tobie Burfeind, Jens Grevé, Anna Bladergroen, Bernard Jan |
Keywords: | Bipolar NiFe battery;Monopolar electrode;Graphite substrate;Ni-mesh substrate;Current collector;β-nickel copper hydroxide cathode;Iron-copper anode | Issue Date: | 2022 | Publisher: | Elsevier | Source: | Zide, D., Felix, C., Oosthuysen, T. et al. 2022. Towards the development of a novel bipolar-based battery in aqueous electrolyte: Evaluation of the electrochemical properties of NiCu based hydroxide electrodes fabricated on Ni–mesh and graphite composite current collectors. Journal of Energy Storage, 45: 103719. [https://doi.org/10.1016/j.est.2021.103719] | Journal: | Journal of Energy Storage | Abstract: | The use of bipolar electrodes in rechargeable batteries can improve specific power, simplify cell design, and reduce manufacturing costs. However, bipolar-based batteries still suffer from many drawbacks. Therefore, developing high-performance active materials and developing improvement strategies encompassing the entire cell’s design is essential. The current collector significantly impacts the viability of mass production; however, it is the most neglected feature of electrochemical energy storage devices. The current collector serves a dual purpose; it allows the movement of electrons among active electrode material and provides mechanical support. It can also act as transportation of current to terminals of the battery. This study constructed a novel bipolar battery cell utilizing graphite as a current collector, and its discharge capacities for Ni-Fe battery applications were evaluated. Monopolar NiFe cells, one using a graphite substrate current collector and the other using a Nimesh current collector, were used for comparison. The monopolar-based electrode coated onto a graphite substrate demonstrated a 29% (199 mAh/g) higher discharge capacity than the Ni-mesh-based electrode (142 mAh/ g) after the 100th cycle. In contrast, the bipolar-based NiFe battery cell resulted in a discharge capacity of 158 mAh/g after the 100th cycle, corresponding to a coulombic efficiency of 72%. | Description: | Article | URI: | http://hdl.handle.net/11189/9278 | ISSN: | 2352-152X | DOI: | https://doi.org/10.1016/j.est.2021.103719 |
| Appears in Collections: | Appsc - Journal Articles (DHET subsidised) |
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| File | Description | Size | Format | |
|---|---|---|---|---|
| Towards_the_development_of_a_novel.pdf | Article | 3.69 MB | Adobe PDF | View/Open |
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