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The different chapters focus on describing the use of single molecule mechanics on a surface and analyze the different steps leading to the design of a single molecule nanocar. The authors present how a single molecule is rotating, how a single molecule gear can participate to a train of molecule gears to propagate motion and how this knowledge is used for the design of nanocars. The way energy is provided to a single molecule and how this energy drives it onto the surface is also analyzed. A large portion of this volume is written by the eight teams selected to participate in the Nanocar Race II event. This book is of great use to graduate students, post-doctoral fellows and researchers who are interested in single molecule mechanics andwho want to know more about the fundamentals and applications of this new research field. . 410 0$aAdvances in Atom and Single Molecule Machines,$x2193-9705 606 $aNanoelectromechanical systems 606 $aNanotechnology 606 $aSelf-assembly (Chemistry) 606 $aSurfaces (Technology) 606 $aNanoscale Devices 606 $aNanoscale Design, Synthesis and Processing 606 $aMolecular Self-assembly 606 $aSurface patterning 615 0$aNanoelectromechanical systems. 615 0$aNanotechnology. 615 0$aSelf-assembly (Chemistry) 615 0$aSurfaces (Technology) 615 14$aNanoscale Devices. 615 24$aNanoscale Design, Synthesis and Processing. 615 24$aMolecular Self-assembly. 615 24$aSurface patterning. 676 $a547.7 702 $aMoresco$b Francesca 702 $aJoachim$b C. 801 0$bMiAaPQ 801 1$bMiAaPQ 801 2$bMiAaPQ 906 $aBOOK 912 $a9910624303203321 996 $aSingle Molecule Mechanics on a Surface$92967883 997 $aUNINA