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This book covers some fundamental aspects and frontiers in
non-equilibrium physics and soft matter research. Apart from the
basic knowledge on nonlinear statistic physics, dynamics, computer
simulations, and main approaches and emerging systems in soft
matter research, particular attention is devoted to new conceptual
flexible functional materials and the enriching areas, such as silk
meso-molecular materials, molecular gels, liquid crystals, flexible
electronics and new types of catalysis, etc. One of the main
characteristics of this book is to start with the structure
formation dynamics and the correlation between the structures and
macroscopic performance. This lays down the foundation for the
mesoscopic materials design and functionalization. The book is
intended for upper undergraduate students, graduate students, and
researchers who are interested in soft matter researches. As one of
main references, the basic principles and technologies of computer
simulations and experimental methods adopted in soft matter
research are also explained. Illustrations and tables are included
in this book to improve the readability, and examples and exercises
are added to help understanding.
Methods in bioinspiration and biomimicking have been around for a
long time. However, due to current advances in modern physical,
biological sciences, and technologies, our understanding of the
methods have evolved to a new level. This is due not only to the
identification of mysterious and fascinating phenomena but also to
the understandings of the correlation between the structural
factors and the performance based on the latest theoretical,
modeling, and experimental technologies. Bioinspiration: From Nano
to Micro Scale provides readers with a broad view of the frontiers
of research in the area of bioinspiration from the nano to
macroscopic scales, particularly in the areas of biomineralization,
antifreeze protein, and antifreeze effect. It also covers such
methods as the lotus effect and superhydrophobicity, structural
colors in animal kingdom and beyond, as well as behavior in ion
channels. A number of international experts in related fields have
contributed to this book, which offers a comprehensive and
synergistic look into challenging issues such as theoretical
modeling, advanced surface probing, and fabrication. The book also
provides a link to the engineering of novel advanced materials
playing an important role in advancing technologies in various
fields.
This book covers some fundamental aspects and frontiers in
non-equilibrium physics and soft matter research. Apart from the
basic knowledge on nonlinear statistic physics, dynamics, computer
simulations, and main approaches and emerging systems in soft
matter research, particular attention is devoted to new conceptual
flexible functional materials and the enriching areas, such as silk
meso-molecular materials, molecular gels, liquid crystals, flexible
electronics and new types of catalysis, etc. One of the main
characteristics of this book is to start with the structure
formation dynamics and the correlation between the structures and
macroscopic performance. This lays down the foundation for the
mesoscopic materials design and functionalization. The book is
intended for upper undergraduate students, graduate students, and
researchers who are interested in soft matter researches. As one of
main references, the basic principles and technologies of computer
simulations and experimental methods adopted in soft matter
research are also explained. Illustrations and tables are included
in this book to improve the readability, and examples and exercises
are added to help understanding.
Methods in bioinspiration and biomimicking have been around for a
long time. However, due to current advances in modern physical,
biological sciences, and technologies, our understanding of the
methods have evolved to a new level. This is due not only to the
identification of mysterious and fascinating phenomena but also to
the understandings of the correlation between the structural
factors and the performance based on the latest theoretical,
modeling, and experimental technologies. Bioinspiration: From Nano
to Micro Scale provides readers with a broad view of the frontiers
of research in the area of bioinspiration from the nano to
macroscopic scales, particularly in the areas of biomineralization,
antifreeze protein, and antifreeze effect. It also covers such
methods as the lotus effect and superhydrophobicity, structural
colors in animal kingdom and beyond, as well as behavior in ion
channels. A number of international experts in related fields have
contributed to this book, which offers a comprehensive and
synergistic look into challenging issues such as theoretical
modeling, advanced surface probing, and fabrication. The book also
provides a link to the engineering of novel advanced materials
playing an important role in advancing technologies in various
fields.
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