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Titlebook: Bio-inspired Asymmetric Design and Building of Biomimetic Smart Single Nanochannels; Xu Hou Book 2013 Springer-Verlag Berlin Heidelberg 20

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Introduction,monstrate the feasibility of various design strategies for building bio-inspired artificial functional nanochannels. This specific responsive behavior is to regulate ionic transport properties inside the single nanopore or nanochannel. It is also intended to provide an overview of this fascinating research filed.
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2190-5053 d preparation of novel artificial responsive symmetric/asymm.In this thesis, the author introduces various bio-inspired smart nanochannel systems. A strategy for design and preparation of novel artificial responsive symmetric/asymmetric single nanochannel systems under various symmetric/asymmetric s
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Asymmetric Temperature/pH Dual-Responsive Symmetric Hour-Glass Shaped Single Nanochannel,iding control over pH and temperature cooperation tunable asymmetric ionic transport property through asymmetric modifications inside the single nanochannels, which could be considered as a primary platform for the simulation of the different ionic transport processes as well as the enhancement of the functionality of ion channels [1].
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Book 2013rom the concepts and results reported in this thesis. Research into artificial functional nanochannels continues to drive new developments of various real-world applications, such as biosensors, energy conversion systems and nanofluidic devices. The work in this thesis has led to more than 15 publications in high-profile journals..
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Live and Maximally Permissive Controller Synthesis Using Theory of Regionswith a Ramadge-Wonham-like approach. Then, control places, that realize the computed behavior when added to the original model, are synthesized. Necessary and sufficient condition of the existence of such places is obtained. A manufacturing application of the method shows its efficiency.
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