Bio-inspired Asymmetric Design and Building of Biomimetic Smart Single Nanochannels

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This book presents a comprehensive and systematic strategy for the design and preparation of novel artificial responsive symmetric/asymmetric single nanochannel systems under various symmetric/asymmetric stimuli.

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 stimuli is presented for the first time. The author's research work utilizes ion track etching polymer nanochannels with different shapes as examples to demonstrate the feasibility of the design strategy for building novel artificial functional nanochannels using various symmetric/asymmetric physicochemical modifications. The development of these nanochannels and their potential applications is a burgeoning new area of research, and a number of exciting breakthroughs may be anticipated in the near future from 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.


Nominated by Chinese Academy of Sciences as an outstanding PhD thesis Puts forward a comprehensive and systematic strategy for the design and preparation of novel artificial responsive symmetric/asymmetric single nanochannel systems under various symmetric/asymmetric stimuli for the first time Summarizes and predicts the development of biomimetic smart nanochannels and their potential real-world applications Winner of the Excellent Doctoral Dissertation of Chinese Academy of Sciences (2012), Lu Jiaxi Outstanding Postgraduate Award (2011) and first prize of the 9th "Colloid Awards of China" (2011) Includes supplementary material: sn.pub/extras

Inhalt

Introduction.- Ions Responsive Asymmetric Conical Shaped Single Nanochannel.- Asymmetric pH-Gating Symmetric Hour-Glass Shaped Single Nanochannel.- Asymmetric Temperature/pH Dual-Responsive Symmetric Hour-Glass Shaped Single Nanochannel.- Asymmetric Conical Shaped Single Composite Nanochannel Materials.

Weitere Informationen

  • Allgemeine Informationen
    • GTIN 09783642380495
    • Genre Elektrotechnik
    • Auflage 2013
    • Sprache Englisch
    • Lesemotiv Verstehen
    • Anzahl Seiten 144
    • Größe H241mm x B160mm x T13mm
    • Jahr 2013
    • EAN 9783642380495
    • Format Fester Einband
    • ISBN 3642380492
    • Veröffentlichung 11.06.2013
    • Titel Bio-inspired Asymmetric Design and Building of Biomimetic Smart Single Nanochannels
    • Autor Xu Hou
    • Untertitel Springer Theses
    • Gewicht 389g
    • Herausgeber Springer Berlin Heidelberg

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