Soft Matter Self-Assembly
  1. 494 pages
  2. English
  3. PDF
  4. Available on iOS & Android
eBook - PDF

About this book

Self-assembly is one of the key concepts in contemporary soft condensed matter. It is an umbrella term which encompasses the various modes of spontaneous organization of micrometer-and submicrometer-sized particles into ordered structures of various degrees of complexity, yet it often relies on remarkably simple interactions and mechanisms. Self-assembly is one of the key principles used by nature to construct living matter, where it frequently takes place in a hierarchical fashion. This book contains the lectures from the Enrico Fermi summer school: Soft Matter Self-assembly, held in Varenna, Italy, in June and July 2015. The primary aim of the school was to cover the most exciting modern aspects of self-assembly in soft condensed matter physics, and to enable Ph.D. students and postdocs to engage with some of the most exciting and current topics in the physics of colloids through a series of mini-courses and seminars hosted by leading figures in the field. Subjects covered include: colloids with directional bonding; pathways of self-organization; self-assembly hydrodynamics; polymer structure and dynamics; liquid-crystal colloid dispersions; and self-organizing nanosystems. The proceedings also include two reprints from Reviews of Modern Physics, and will be of interest to both students and experts in the field.

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Yes, you can access Soft Matter Self-Assembly by C.N. Likos,F. Sciortino,E. Zaccarelli,Christos N. Likos,Francesco Sciortino,Emanuela Zaccarelli,Primož Ziherl in PDF and/or ePUB format, as well as other popular books in Physical Sciences & Physics. We have over one million books available in our catalogue for you to explore.

Information

Edition
1
Subtopic
Physics
Index
Physics

Table of contents

  1. Title Page
  2. Contents
  3. Preface
  4. Course group shot
  5. Basic concepts in self-assembly
  6. Self-assembly from colloids to biology
  7. Depletion interactions on soft colloids: Glass formation, melting and demixing
  8. Driven self-assembly
  9. The influence of self-assembly on the magnetic response of dipolar soft systems
  10. Capillary interactions on fluid interfaces: Opportunities for directed assembly
  11. Pathways to self-organization: Crystallization via nucleation and growth
  12. Static and dynamic properties of inverse patchy colloids
  13. A geometric view of structure formation in soft colloids
  14. DNA-based nanoscale self-assembly
  15. The hydrodynamics of active systems
  16. Colloidal inclusions in liquid crystals
  17. List of participants