Description

Book Synopsis
This volume includes six chapters and presents some of the latest advancements in materials science research. Chapter One describes the structural characterization, the polyelectrolyte properties and the proton dynamics of imidazole-based materials, with special emphasis on the application for proton conductors, gene delivery systems, pollutant adsorbents, fluorescent sensors and OLED technologies. Chapter Two details various characteristics of polyethylene terephthalate fiber. Chapter Three explains the foundation of photonic crystals from one-dimension to higher-order and introduces topological ideas in photonic crystals. Chapter Four includes research on production, properties and applications of polyethylene terephthalate. Chapter Five explores the potential application of antimonene as an anode material in sodium-ion batteries. Finally, Chapter Six summarizes recent advances on the role of fullerene additions for structural behaviors of thermoplastic matrices.

Table of Contents
Preface; Imidazole-Based Materials: From Characterization to Gene Delivery, Proton Conductors, Pollutant Adsorbents and OLEDs Devices; Polyethylene Terephthalate Fiber: Fiber Spinning, Properties, Applications and Recent Developments; From Photonic Crystal to Topological Photonic Crystal; PET: Production, Properties and Applications; Antimonene: A Promising Anode Material in Sodium-Ion Battery; The Use of Fullerene in Thermoplastic Matrices on Polymeric Composites Applications; Index.

Advances in Materials Science Research: Volume 48

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A Hardback by Maryann C. Wythers

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    View other formats and editions of Advances in Materials Science Research: Volume 48 by Maryann C. Wythers

    Publisher: Nova Science Publishers Inc
    Publication Date: 11/11/2021
    ISBN13: 9781685073718, 978-1685073718
    ISBN10: 1685073719

    Description

    Book Synopsis
    This volume includes six chapters and presents some of the latest advancements in materials science research. Chapter One describes the structural characterization, the polyelectrolyte properties and the proton dynamics of imidazole-based materials, with special emphasis on the application for proton conductors, gene delivery systems, pollutant adsorbents, fluorescent sensors and OLED technologies. Chapter Two details various characteristics of polyethylene terephthalate fiber. Chapter Three explains the foundation of photonic crystals from one-dimension to higher-order and introduces topological ideas in photonic crystals. Chapter Four includes research on production, properties and applications of polyethylene terephthalate. Chapter Five explores the potential application of antimonene as an anode material in sodium-ion batteries. Finally, Chapter Six summarizes recent advances on the role of fullerene additions for structural behaviors of thermoplastic matrices.

    Table of Contents
    Preface; Imidazole-Based Materials: From Characterization to Gene Delivery, Proton Conductors, Pollutant Adsorbents and OLEDs Devices; Polyethylene Terephthalate Fiber: Fiber Spinning, Properties, Applications and Recent Developments; From Photonic Crystal to Topological Photonic Crystal; PET: Production, Properties and Applications; Antimonene: A Promising Anode Material in Sodium-Ion Battery; The Use of Fullerene in Thermoplastic Matrices on Polymeric Composites Applications; Index.

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