| Svetlana Batasheva, Gölnur Fakhrullina, Farida Akhatova, Rawil Fakhrullin (2019) Caenorhabditis elegans Nematode: A Versatile Model to Evaluate the Toxicity of Nanomaterials In Vivo |
| A.C.Santos, I. Pereira, C. Ferreira, F. Veiga, R. Fakhrullin (2019) Layer-by-Layer Assembly for Nanoarchitectonics. Chapter 1.4 |
| Rezida Khramchenkova, Ilvina Safina, Sergey Drobyshev, Svetlana Batasheva, Evgeny Nuzhdin, Rawil Fakhrullin (2019) Advanced Microscopy Techniques for Nanoscale Diagnostic of Cultural Heritage: Scanning Electron Microscopy for Investigation of Medieval Coins and Frescos From the Republic of Tatarstan. Chapter 1 Nanotechnologies and Nanomaterials for Diagnostic, Conservation and Restoration of Cultural Heritage, 1st Edition, Advanced Nanomaterials |
| A.A. Danilushkina, H.Lee, I.S. Choi, R.F.Fakhrullin Magnetic nanoparticles surface-engineered cells for regenerative and bioanalytical applications. Chapter 6.2 Nanotechnologies in Preventive and Regenerative Medicine, 1st Edition, An Emerging Big Picture |
| Katsuhiko Ariga, Hideki Abe, Qingmin Ji and Yuri M. Lvov Halloysite and Related Mesoporous Carriers for Advanced Catalysis and Drug Delivery. Chapter 7. Functional Polymer Composites with Nanoclays |
| Renata Minullina, Joshua Tully, Raghuvara Yendluri and Yuri Lvov Halloysite Clay Nanotubes for Long Acting Controlled Release of Drugs and Proteins. Chapter 13. Functional Polymer Composites with Nanoclays |
| Ekaterina A. Naumenko and Rawil F. Fakhrullin Toxicological Evaluation of Clay Nanomaterials and Polymer–Clay Nanocomposites. Chapter 15. Functional Polymer Composites with Nanoclays |
| Rawil F. Fakhrullin, Gleb B. Sukhorukov, and Yuri M. Lvov (2014) Layer-by-Layer Nanopreparations for Medicine — Smart Polyelectrolyte Multilayer Capsules and Coatings. Chapter 9: pp. 329-365. Volume 3. Handbook of Nanobiomedical Research. Frontiers in Nanobiomedical Research. |
| Ekaterina A.Naumenko, Maria R. Dzamukova, Rawil F. Fakhrullin (2014) Magnetically Functionalized Cells: Fabrication, Characterization, and Biomedical Applications. Chapter 2: pp.7-26 Implantable Bioelectronics HIGHLITED BY Kazan University |