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An introduction to the state-of-the-art of the diverse
self-assembly systems Self-Assembly: From Surfactants to
Nanoparticles provides an effective entry for new researchers into
this exciting field while also giving the state of the art
assessment of the diverse self-assembling systems for those already
engaged in this research. Over the last twenty years, self-assembly
has emerged as a distinct science/technology field, going well
beyond the classical surfactant and block copolymer molecules, and
encompassing much larger and complex molecular, biomolecular and
nanoparticle systems. Within its ten chapters, each contributed by
pioneers of the respective research topics, the book: Discusses the
fundamental physical chemical principles that govern the formation
and properties of self-assembled systems Describes important
experimental techniques to characterize the properties of
self-assembled systems, particularly the nature of molecular
organization and structure at the nano, meso or micro scales.
Provides the first exhaustive accounting of self-assembly derived
from various kinds of biomolecules including peptides, DNA and
proteins. Outlines methods of synthesis and functionalization of
self-assembled nanoparticles and the further self-assembly of the
nanoparticles into one, two or three dimensional materials.
Explores numerous potential applications of self-assembled
structures including nanomedicine applications of drug delivery,
imaging, molecular diagnostics and theranostics, and design of
materials to specification such as smart responsive materials and
self-healing materials. Highlights the unifying as well as
contrasting features of self-assembly, as we move from surfactant
molecules to nanoparticles. Written for students and academic and
industrial scientists and engineers, by pioneers of the research
field, Self-Assembly: From Surfactants to Nanoparticles is a
comprehensive resource on diverse self-assembly systems, that is
simultaneously introductory as well as the state of the art.
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