Carbon and PZT Nanofibers through Electrospinning

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Geliefert zwischen Mi., 26.11.2025 und Do., 27.11.2025

Details

One-dimensional structures, such as nanofibers, have the smallest dimension for efficient transport of electrons and optical excitations, and can be used in diverse applications such as nano-electronics and photonics as building blocks in bottom-up assembly, which could overcome fundamental limitations of conventional microfabrications based on lithography. Unfortunately, there has not been a well-established technology to fabricate nanofibers. Electrostatic generation or electrospinning, an old technology patented in 1934, is promising to fill the blank. The technology has recently been re-vitalized to fabricate versatile ultrafine fibers. This book develops a general methodology for fabrication of versatile inorganic fibers based on electrospinning and a couple of specific receipts for fabrication of carbon and lead zirconate titanate nanofibers, characterizes the synthesized nanofibers and their properties, elucidates and models related physical mechanisms, especially the mechanism of electron transport in disordered system in reduced dimension. It should help shed some light on nanotechnology and is of reference value to those in nanotechnology.

Autorentext

Graduated from the University of Michigan (Ross School of Business) with a doctoral degree in marketing (2007) and a masters degree in applied economics (2006), Yu Wang is currently an assistant professor of marketing at the University of Texas at Dallas. She is an analytical modeler and experimental economist studying marketing problems.

Weitere Informationen

  • Allgemeine Informationen
    • GTIN 09783639230260
    • Sprache Englisch
    • Genre Allgemeines & Lexika
    • Größe H220mm x B5mm x T150mm
    • Jahr 2010
    • EAN 9783639230260
    • Format Kartonierter Einband (Kt)
    • ISBN 978-3-639-23026-0
    • Titel Carbon and PZT Nanofibers through Electrospinning
    • Autor Yu Wang , Jorge Santiago-Avilés
    • Untertitel Synthesis, Characterization, Properties and Related Phenomena and Mechanisms
    • Gewicht 140g
    • Herausgeber VDM Verlag Dr. Müller e.K.
    • Anzahl Seiten 92

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