Modern Nanotechnology
Modern nanotechnology represents a transformative frontier in science, blending the principles of physics, chemistry, and engineering to manipulate materials at the atomic and molecular levels. This book provides a comprehensive overview of the field, starting with the foundational concepts and moving into the detailed methodologies used to understand and harness nanomaterials. It delves into empirical force fields and molecular dynamics, illustrating the theoretical and practical aspects of simulating and analyzing nanostructures. Through advanced characterization techniques, the text explores the unique properties of nanosystems, highlighting their thermal stability, material properties, and nanoscale abrasion.
Description
Modern nanotechnology represents a transformative frontier in science, blending the principles of physics, chemistry, and engineering to manipulate materials at the atomic and molecular levels. This book provides a comprehensive overview of the field, starting with the foundational concepts and moving into the detailed methodologies used to understand and harness nanomaterials. It delves into empirical force fields and molecular dynamics, illustrating the theoretical and practical aspects of simulating and analyzing nanostructures. Through advanced characterization techniques, the text explores the unique properties of nanosystems, highlighting their thermal stability, material properties, and nanoscale abrasion.