ELECT RIC ENERGY ST ORAGE SYST EM Page 53 of 72 BASED ON WAT ER
Kevin Indra Wijaya REFERENCES
[1] EZ Water. Available at: https://www.pollacklab.org/research Accessed: August 2020.
[2] Luigi, P. and Antonucci, V. (2011) ‘Electrochemical Energy Storage’, Energy Storage in the Emerging Era of Smart Grids, (325325). doi: 10.5772/23452. Accessed August 2020
[3] Elham Kamali Heidari, A. Kamyabi (2018) ‘Electrode Materials for Lithium-Ion Batteries: A Review’, Ultrafine Grainrd and Nanostructured Materials, 51(1), pp. 1–
12. doi: 10.22059/JUFGNSM.2018.01.01. Accessed September 2020
[4] Elton, D. C. et al. 2020 ‘Exclusion Zone Phenomena in Water—A Critical Review of Experimental Findings and Theories’, International Journal of Molecular Sciences, Accessed November 2020
[5] Hydroelectirc Energy. Available at:
https://www.nationalgeographic.org/encyclopedia/hydroelectric-energy/ Accessed:
August 2020.
[6] Bani, N. A. et al. (2018) ‘Feasibility study of a low cost saltwater lamp for rural area’, International Journal of Integrated Engineering, 10(7), pp. 167–176. doi:
10.30880/ijie.2018.10.07.016. Accessed November 2020
[7] Ansari, A. and Rafique, A. (2011) ‘Generation Of Electricity through Solar cell and Thermocouples with selling power back to Grid’, (May 2014). Accessed November 2020
[8] Smarandache, F. and Christianto, V., 2006 ‘Observation of Anomalous Potential Electric Energy in Distilled Water Under Solar Heating’. Accessed August 2020