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This book covers state-of-the-art development in
microfluidics-enabled soft manufacturing (MESM), ranging from
fundamentals to applications. The book addresses the long-standing
challenge in the manufacture of simultaneously achieving both
precise control over nano-/micro-scale structures and large-scale
fabrication of materials for pragmatic use, with
microfluidics-enabled soft manufacture to fill the gap between the
widely-varied length scales involved. It offers a comprehensive
insight into the microfluidic generation of fluid systems as liquid
templates, such as droplets, bubbles, jets, emulsions, and foams,
which are categorized into individual templates, one-dimensional
arrays, and two-/three-dimensional assemblies for the modular
fabrication of microparticles, microfibers, and porous materials,
respectively. MESM enriches the compositional and structural
diversity of engineered materials for well-tailored properties and
functionalities, markedly broadening the application horizons
across interdisciplinary fields, including engineering,
environment, physics, chemistry, biology, and medicine. This book
aims to systematize this emerging yet versatile and powerful
technology, with the hope of aiding the realization of its full
potential. Microfluidics-Enabled Soft Manufacture will be an
invaluable reference for graduate students, postgraduates,
researchers, and practitioners/professionals working in micro and
nanofabrication, materials science, surface science, fluid
dynamics, and engineering.
This book covers state-of-the-art development in
microfluidics-enabled soft manufacturing (MESM), ranging from
fundamentals to applications. The book addresses the long-standing
challenge in the manufacture of simultaneously achieving both
precise control over nano-/micro-scale structures and large-scale
fabrication of materials for pragmatic use, with
microfluidics-enabled soft manufacture to fill the gap between the
widely-varied length scales involved. It offers a comprehensive
insight into the microfluidic generation of fluid systems as liquid
templates, such as droplets, bubbles, jets, emulsions, and foams,
which are categorized into individual templates, one-dimensional
arrays, and two-/three-dimensional assemblies for the modular
fabrication of microparticles, microfibers, and porous materials,
respectively. MESM enriches the compositional and structural
diversity of engineered materials for well-tailored properties and
functionalities, markedly broadening the application horizons
across interdisciplinary fields, including engineering,
environment, physics, chemistry, biology, and medicine. This book
aims to systematize this emerging yet versatile and powerful
technology, with the hope of aiding the realization of its full
potential. Microfluidics-Enabled Soft Manufacture will be an
invaluable reference for graduate students, postgraduates,
researchers, and practitioners/professionals working in micro and
nanofabrication, materials science, surface science, fluid
dynamics, and engineering.Â
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