1. M. Borghei , A.R Karbassi, Abdulrasoul Oromiehie, Sh. Khramnezhadian, (2010), "Microbial biodegradable potato starch based lowdensity polyethylene". African J. of Biotechnology V 9(26).4075-4080,June,.polyethylene films. Carbohydr Polym;50:331–7 2002.
  2. A.Oromiehie& T.Taherzadeh, (2010) ," Studies the physical and mechanical properties of PE/Starch blends", Journal of Applied Chemical Researches(JACR), 11.
  3. Abdulrasoul Oromiehie, Peghah Gusheh, (2010), "Preparation of biodegradable PE/Starch composites and characterization their properties", J. of Packaging Sciences and Skills, No.2.
  4. Sh. Khramnezhadian, M. Borghei , A.R Karbassi, Abdulrasoul Oromiehie, (2011), " Biodegradability, water absorption and mechanical properties of LLDPE/PE-G-MA/Chitosan",accepted. E.Polymer J.
  5. Zapata, P. A., Palza, H., Cruz, L. S., Lieberwirth, I., Catalina, F., Corrales, T., & Rabagliati, F. M. (2013). "Polyethylene and poly(ethylene-co-1-octadecene) composites with TiO 2 based nanoparticles by metallocenic “in situ” polymerization". Polymer, 54(11), 2690-2698.
  6. Zapata, P. A., Palza, H., Cruz, L. S., Lieberwirth, I., Catalina, F., Corrales, T., & Rabagliati, F. M. (2013). "Polyethylene and poly (ethylene-co-1-octadecene) composites with TiO 2 based nanoparticles by metallocenic “in situ” polymerization". Polymer, 54(11), 2690-2698.
  7. Bodaghi.H, Oromiehie.A , Mostofi. Y. (2011), "Optimization of packaging films with nano-particles to keep the yellow plum fruit in controlled atmosphere PhD thesis". Iran Polymer and Petrochemical Institute.
  8. Solomon, M. J., A. S. Almusallam, K. F. Seefeldt, K. F. A. Somwangthanaroj, and P. Varadan, (2001), "Rheology of polypropylene/clay hybrid materials". Macromolecules 34, 1864 –1872.
  9. Sinha Ray, S., (2006), "Rheology of polymer/layered silicate nanocomposites". J. Ind. Eng. Chem. – Seoul, Repub.Korea- 12, 811– 842.
  10. Zhang, J., Wang, Z., Zhang, X., Zheng, X., & Wu, Z. (2015). "Enhanced antifouling behaviours of polyvinylidene fluoride membrane modified through blending with nano-TiO 2/polyethylene glycol mixture". Applied Surface Science, 345, 418-427.
  11. Ivanova, T., Lilichenko, N., Zicans, J., Maksimov, R., (2009), "Starch based biodegradable nanocomposites: Structure and properties", Diffusion and Defect Data Pt.B: Solid State Phenomena, 151, 150-153.
  12. Nguyen, V. G., Thai, H., Mai, D. H., Tran, H. T., & Vu, M. T. (2013). "Effect of titanium dioxide on the properties of polyethylene/TiO 2 nanocomposites". Composites Part B: Engineering, 45(1), 1192-1198.
  13. Baldissarelli, V. Z., de Souza, T., Andrade, L., de Oliveira, L. F. C., Jose, H. J., & Moreira, R. D. F. P. M. (2015). "Preparation and photocatalytic activity of TiO 2-exfoliated graphite oxide composite using an ecofriendly graphite oxidation method". Applied Surface Science, 359, 868-874.
  14. Zhao, J., A. B. Morgan, and J. D. Harris, (2005), "Rheological characterization of polystyreneclay nanocomposites to compare the degree of exfoliation and dispersion". Polymer 46, 8641– 8660.
  15. Daneshpayeh, S., Ghasemi, F. A., Ghasemi, I., & Ayaz, M. (2016). "Predicting of mechanical properties of PP/LLDPE/TiO 2 nano-composites by response surface methodology". Composites Part B: Engineering, 84, 109-120.
  16. Ayyer, R. K., and A. I. Leonov, (2004), "Comparative rheological studies of polyamide-6 and its low loaded nanocom-posite based on layered silicates". Rheol. Acta 43, 283–292 .
  17. F.J. Rodriguez-Gonzalez1 , B.A. Ramsay2, B.D. Favis, (2003), "Polymer 44", 1517–1526.
  18. Saeed Hanifi, Abdulrasoul Oromiehie, Shervin Ahmadi*, Hassan Farhadnejad, (2012), " "The Effect corn starch and Montmorillonite nanocomposites reinforced polypropylene: Preparation and Investigation of the properties and biodegradability". J. of Vinyl and Additive Technology, P1-35, May.