Electrical conductivity behaviour of aqueous solutions of methylene blue at different temperatures using impedance spectroscopy

Author:

Vaja Chandan R.,Rana V. A.

Publisher

Springer Science and Business Media LLC

Reference24 articles.

1. Sawafta, R., Shahwan, T.: A comparative study of the removal of methylene blue by iron nanoparticles from water and water-ethanol solutions. J. Mol. Liq. 273, 274–281 (2019)

2. Ortega, P.F.R., de Paula, F.G.F., de Castro, M.C.M., Binatti, I., González, Z., Blanco, C., Santamaría, R., Lavall, R.L.: Mechanism and stability of a redox supercapacitor based on methylene blue: Effects of degradation of the redox shuttle ACS Appl. Energy Mater. 1, 2306–2316 (2018)

3. Roldán, S., Granda, M., Menéndez, R., Santamaría, R., Blanco, C.: Supercapacitor modified with methylene blue as redox active electrolyte Electrochim. Acta. 83, 241–246 (2012)

4. Zidan, H.M., El-Khodary, A., El‐Sayed, I.A., El‐Bohy, H.I.: Optical parameters and absorption studies of UV‐irradiated azo dye‐doped PMMA films J. Appl. Polym. Sci. 117, 1416–1423 (2010)

5. Zidan, H.M., El-Ghamaz, N.A., Abdelghany, A.M., Lotfy, A.: Structural and electrical properties of PVA/PVP blend doped with methylene blue dye int. J. Electrochem. Sci. 11, 9041–9056 (2016)

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