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Amino acids as corrosion inhibitors: Quantum and Experimental studies
Details
The search for eco-friendly corrosion inhibitor is essential for the industries where corrosion is a major problem. This book is a report of research jointly carried out by the Femi Awe and Professor Nnabuk Okon Eddy. The research was conducted to investigate the possibility of using some amino acids as inhibitors for the corrosion of mild steel in solutions of HCl. Theoretical (quantum chemical principles) and experimental(gravimetric, gasometric, thermometric and FTIR) approaches were employed in the research. The work is more of a research monograph and were conducted under the supervision and supports of eminent academicians (including Professor U. J. Ibok and Prof. E. C. Gimba). The authors found that amino acids are good corrosion inhibitors and have have also established equations using QSAR that can be used as a guide toward the synthesis of new corrosion inhibitors. Application of condensed Fukui and softness functions as well as relative nucleophilicity/electrophilicity (calculated for B3LYP(6-31G) and MP2(STO-5G) paturbations) yeilded information on the sites for electrophilic and nucleophilic attacks.
Autorentext
Mr Awe Femi Emmanuel holds a Master degree in Physical chemistry and a lecturer in Federal college of Freshwater Fisheries Technology in Nigeria. His research interest is aimed at bridging Theoretical and Experimental Chemistry through the mentorship of Prof. Nnabuk Okon Eddy,the second Author, a computational chemist.
Weitere Informationen
- Allgemeine Informationen
- GTIN 09783659220760
- Sprache Englisch
- Genre Chemie
- Größe H220mm x B220mm x T150mm
- Jahr 2012
- EAN 9783659220760
- Format Kartonierter Einband (Kt)
- ISBN 978-3-659-22076-0
- Titel Amino acids as corrosion inhibitors: Quantum and Experimental studies
- Autor Femi Emmanuel Awe , Nnabuk Okon Eddy
- Untertitel Experimental and Computational Chemistry simulations studies on amino acids as corrosion inhibitor for mild steel in HCl
- Herausgeber LAP Lambert Academic Publishing
- Anzahl Seiten 196