577
Views
14
CrossRef citations to date
0
Altmetric
Voltammetry

Aluminum-Air Batteries with Solid Hydrogel Electrolytes: Effect of pH Upon Cell Performance

ORCID Icon, , &
Pages 28-39 | Received 08 Oct 2019, Accepted 20 Dec 2019, Published online: 03 Jan 2020

References

  • Arthur, D. E., A. Jonathan, P. O. Ameh, and C. Anya. 2013. A review on the assessment of polymeric materials used as corrosion inhibitor of metals and alloys. International Journal of Industrial Chemistry 4 (1):2–9. doi:10.1186/2228-5547-4-2.
  • Caldeira, I., A. Lüdtke, F. Tavares, C. Cholant, R. Balboni, W. H. Flores, A. Galio, A. Pawlicka, and C. O. Avellaneda. 2018. Ecologically friendly xanthan gum-PVA matrix for solid polymeric electrolytes. Ionics 24 (2):413–20. doi:10.1007/s11581-017-2223-6.
  • Di Palma, T. M., F. Migliardini, D. Caputo, and P. Corbo. 2017. Xanthan and k-carrageenan based alkaline hydrogels as electrolytes for Al/air batteries. Carbohydrate Polymers 157:122–7. doi:10.1016/j.carbpol.2016.09.076.
  • Di Palma, T. M., F. Migliardini, M. F. Gaele, and P. Corbo. 2019. Physically cross-linked xanthan hydrogels as solid electrolytes for Al/air batteries. Ionics 25 (9):4209–17. doi:10.1007/s11581-019-02965-y.
  • Ding, F., J. Z. Sihui Wang, H. Zhong, Q. Zhang, and Q. Zhao. 2016. Aluminum–Air batteries fundamentals and applications. In Metal–air and metal–sulfur batteries: Fundamentals and applications, ed. V. Neburchilov and J. Zhang. Boca Raton, FL: CRC Press.
  • Finkenstadt, V. L. 2005. Natural polysaccharides as electroactive polymers. Applied Microbiology and Biotechnology 67 (6):735–45. doi:10.1007/s00253-005-1931-4.
  • Kadokawa, J., M. Murakami, A. Takegawa, and Y. Kaneko. 2009. Preparation of cellulose-starch composite gel and fibrous material from a mixture of the polysaccharides in ionic liquid. Carbohydrate Polymers 75 (1):180–3. doi:10.1016/j.carbpol.2008.07.021.
  • Lang, C. M., K. Kim, L. Guerra, and P. A. Kohl. 2005. Cation electrochemical stability in chloroaluminate ionic liquids. The Journal of Physical Chemistry B 109 (41):19454–62. doi:10.1021/jp053106v.
  • Li, Q., and N. J. Bjerrum. 2002. Aluminum as anode for energy storage and conversion: A review. Journal of Power Sources 110 (1):1–10. doi:10.1016/S0378-7753(01)01014-X.
  • Liew, S. Y., J. C. Juan, C. W. Lai, G. T. Pan, T. C. K. Yang, and T. K. Lee. 2019. An eco-friendly water-soluble graphene-incorporated agar gel electrolyte for magnesium-air batteries. Ionics 25 (3):1291–301. doi:10.1007/s11581-018-2710-4.
  • Liu, Y., Q. Sun, W. Li, K. R. Adair, J. Li, and X. Sun. 2017. A comprehensive review on recent progress in aluminum-air batteries. Green Energy & Environment 2:246–77. doi:10.1016/j.gee.2017.06.006.
  • Migliardini, F., T. M. Di Palma, M. F. Gaele, and P. Corbo. 2018. Solid and acid electrolytes for Al-air batteries based on xanthan-HCl hydrogels. Journal of Solid State Electrochemistry 22 (9):2901–16. doi:10.1007/s10008-018-4003-2.
  • O’Mahony, A. M., D. S. Silvester, L. Aldous, C. Hardacre, and R. G. Compton. 2008. Effect of Water on the Electrochemical Window and Potential Limits of Room-Temperature Ionic Liquids. Journal of Chemical & Engineering Data 53:2884–91. doi:10.1021/je800678e.
  • Obot, I. B., S. A. Umoren, and N. O. Obi-Egbedi. 2011. Corrosion inhibition and adsorption behaviour for aluminuim by extract of Aningeria robusta in HCl solution: Synergistic effect of iodide ions. Journal of Materials and Environmental Science 2:60–71.
  • Tomiyasu, H., H. Shikata, K. Takao, N. Asanuma, S. Taruta, and Y. Y. Park. 2017. An aqueous electrolyte of the widest potential window and its superior capability for capacitors. Scientific Reports 7 (1):1–12. doi:10.1038/srep45048.
  • Xu, Y., Y. Zhao, J. Ren, Y. Zhang, and H. Peng. 2016. An all‐solid‐state fiber‐shaped aluminum–air battery with flexibility, stretchability, and high electrochemical performance. Angewandte Chemie 128 (28):8111–4.
  • Xu, Y., Y. Zhao, J. Ren, Y. Zhang, and H. Peng. 2016. An all-solid-state fiber-shaped aluminum-air battery with flexibility, stretchability and high electrochemical performance. Angewandte Chemie International Edition 55 (28):7979–82. doi:10.1002/anie.201601804.
  • Yi, Y., G. Weinberg, M. Prenzel, M. Greiner, S. Heumann, S. Becker, and R. Schlögl. 2017. Electrochemical corrosion of a glassy carbon electrode. Catalysis Today 295:32–40. doi:10.1016/j.cattod.2017.07.013.
  • Yoshida, H., F. Takei, and N. Sawatari. 2002. High ionic conducting polymer with polysaccharide and its applications. Fujitsu Scientific and Technical Journal 38:39–45.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.