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Preface; Contents; Contributors; Part I Nanocomposites and Nanostructures; Chapter 1 Endohedral Fullerene Complexes. Which and How Many Small Molecules Can Be Inserted into Fullerenes and a Carbon Nanotube?; 1.1 Introduction; 1.2 Nontrivial Fullerene Discovery; 1.3 Types of Endohedral Fullerene Complexes; 1.3.1 Fullerenes with Noble Gas Atoms and Molecules as Guests; 1.3.2 Endohedral Metallofullerenes; 1.3.3 Fullerenes with Neutral or Slightly Polar Molecules as Guests; 1.3.3.1 Simple Fullerenes with Small Non-metal Molecular Guests; 1.3.3.2 Nested Fullerenes and Analogous Structures

1.4 Complexes with the C50H10 Nanotube as the Host1.5 Exciting Properties of Endohedral Fullerene Complexes; 1.6 Conclusions; References; Chapter 2 Physical and Mechanical Properties of Surface Nanocrystalline Structures Generated by Severe Thermal-Plastic Deformation; 2.1 Introduction; 2.2 Investigation Methods; 2.3 Results of Investigations and Discussion; 2.4 Conclusions; References; Chapter 3 Energy Spectra of the Fibonacci Superlattice Based on the Gapped Graphene; 3.1 Introduction; 3.2 Concretization of the Statement of the Problem and the Method for Calculating the Spectra

3.3 The Analysis of the Results ObtainedReferences; Chapter 4 Carbon-Based Piezoresistive Polymer Composites; 4.1 Polymeric Composites; 4.1.1 EG: Synthesis and Properties; 4.1.2 CNTs: Synthesis and Properties; 4.1.3 Composite Processing and Fabrication; 4.2 Electrical Conductivity Percolation Threshold; 4.2.1 Percolation for Two Fillers; 4.3 Piezoresistivity; 4.4 Piezoresistive Sensors; 4.4.1 Carbon-Based Polymer Piezoresistive Composite Strain Sensors; 4.5 Conclusion; References

Chapter 5 Structure and Physical and Mechanical Properties of Nanocomposite (Zr-Ti-Cr-Nb)N and (Ti-Zr-Al-Nb-Y)N Coatings, Obtained by Vacuum-Arc Evaporation Method5.1 Introduction; 5.2 Equipment and Methods of Investigation; 5.3 Experimental Results and Discussion of (Zr-Ti-Cr-Nb)N Systems; 5.4 Experimental Results and Discussion of (Ti-Zr-Al-Nb-Y)N Systems; 5.5 Summary; References; Chapter 6 New Nanosized Systems Based Lanthanide Diketonate Complexes for OLEDs; 6.1 Introduction; 6.2 Experimental; 6.2.1 Samples; 6.2.2 Observation and Measurements; 6.3 Results and Discussion; 6.4 Conclusions

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