Silver–Gold Synthesized Nanoparticle as Corrosion Inhibitor on Mild Steel in 1.0 M HCl Environment

Author:

Odusote Jamiu K.,Adeleke Adekunle A.,Ikubanni Peter P.,Asafa Tesleem B.,Kolawole Sharafadeen K.,Opatola Emmanuel A.,Okolie Jude A.,Orhadahwe Thomas A.ORCID

Publisher

Springer Science and Business Media LLC

Subject

Physical and Theoretical Chemistry,Environmental Chemistry,Chemistry (miscellaneous),Catalysis

Reference44 articles.

1. Koch G, Varney J, Thompson N, Moghissi O, Gould M, Payer J (2016) International measures of prevention, application, and economics of corrosion technologies study. NACE International Impact. http://impact.nace.org/economic-impact.aspx/. Accessed 22 Oct 2022

2. Revie RW, Uhlig HH (2008) Definition and importance of corrosion. Corrosion and corrosion control: an introduction to corrosion science and engineering, 4th edn. Wiley & Sons, Inc., New York, pp 1–8. https://doi.org/10.1002/9780470277270.ch1

3. Ahmad Z (2006) Principles of corrosion engineering and corrosion control, 1st edn. Elsevier Science & Technology Books, Amsterdam

4. Asaad MA, Sarbini NN, Sulaiman A, Ismail M, Huseien GF, Majid ZA, Raja PB (2018) Improved corrosion resistance of mild steel against acid activation: impact of novel Elaeis guineensis and silver nanoparticles. J Indus Eng Chem 63:139–148

5. Odusote JK, Asafa TB, Oseni JG, Adeleke AA, Adediran AA, Yahya RA, Abdul JM, Adedayo SA (2021) Inhibition efficiency of gold nanoparticles on corrosion of mild steel, stainless steel and aluminium in 1 M HCl solution. Mat Today: Proc 38:578–583

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