Self-Assembly from Nano to MILLI Scales

Self-Assembly from Nano to MILLI Scales
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Artikel-Nr:
9780387300627
Veröffentl:
2013
Erscheinungsdatum:
01.01.2013
Seiten:
500
Autor:
Karl F. Bohringer
Format:
229x152x0 mm
Serie:
150, Microsystems
Sprache:
Englisch
Beschreibung:

Self-assembly is a well-established concept in physics, chemistry, molecular biology, and is an important approach towards high volume production of systems made of heterogeneous sub-millimeter components. Only recently have researchers come to understand how self assembly can be extended to engineered components. Self-Assembly from Nano to Milli Scales provides an overview of recent developments and detailed blueprints for applying new techniques in self assembly to the field of engineering. Through introduction to the basic principles of stochastic parallel self assembly with existing examples from fluidic assembly, dry self assembly and other self assembly techniques, this work shows how to use modeling and simulation tools to predict the behavior of self assembly systems in order to optimize performance.
Self-Assembly from Nano to Milli Scales provides an overview of recent developments and detailed blueprints for applying new techniques in self assembly to the field of engineering. Through introduction to the basic principles of stochastic parallel self assembly with existing examples from fluidic assembly, dry self assembly and other self assembly techniques, this work shows how to use modeling and simulation tools to predict the behavior of self assembly systems in order to optimize performance.
Self-assembly is a well-established concept in physics, chemistry, molecular biology, and is an important approach towards high volume production of systems made of heterogeneous sub-millimeter components. Only recently have researchers come to understand how self assembly can be extended to engineered components. Self-Assembly from Nano to Milli Scales provides an overview of recent developments and detailed blueprints for applying new techniques in self assembly to the field of engineering. Through introduction to the basic principles of stochastic parallel self assembly with existing examples from fluidic assembly, dry self assembly and other self assembly techniques, this work shows how to use modeling and simulation tools to predict the behavior of self assembly systems in order to optimize performance.
Assembly and Integration in Manufacturing of Microsystems an Overview.- Stochastic Parallel Self-Assembly.- Modeling and Simulation of Parallel Self-Assembly.- Adding Programmability to Self-assembly.- Self-assembly, Compilers, and Computation.

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