1. Allam, N. K., Nazeer, A. A., & Ashour, E. A. (2009). A review of the effects of benzotriazole on the corrosion of copper and copper alloys in clean and polluted environments. Journal of Applied Electrochemistry, 969-961 ,39.
2. Argyropoulos, V., Karydas, A. G., Domi, A. V., Karabotsos, T., Kapatou, E., Perdikatsis, V.B., ... & Charalambous, D. (2003). A scientific approach for the conservation of the outdoor bronze monument of Theodoros Kolokotronis. In Conservation science 2002: papers from the conference held in Edinburgh, Scotland 24-22 May 2002 (pp. 147-141).
3. Christensen, T. M., & Sorensen, N. R. (1991). Thermal stability of benzotriazole on copper during atmospheric corrosion. Surface and interface analysis, 6-3 ,(1)17.
4. Kipper, P. V. (1998). The Care of Bronze Sculpture. 2nd edition. USA: Path – publication.
5. Oudbashi, O. (2015). Multianalytical study of corrosion layers in some archaeological copper alloy artefacts. Surface and Interface Analysis, 1147-1133 ,(13)47.
6. Scott, D. A. (2002). Copper and bronze in art: corrosion, colorants, conservation: Getty publications.
7. Selwyn, L. S., Binnie, N. E., Poitras, J., Laver, M. E., & Downham, D. A. (1996). Outdoor bronze statues: analysis of metal and surface samples. Studies in conservation, 228-205 ,(4)41.
8. Vogel, A. I. (1987). qualitative inorganic analysis. In G. Svehla & A. I. Vogee (Eds.), (6th ed. / ed.). Harlow, Essex, England: Longman Scientific & Technical;