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Developing Novel Spinning Methods to Fabricate Continuous Multifunctional Fibres for Bioapplications, Azadeh Mirabedini


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Автор: Azadeh Mirabedini
Название:  Developing Novel Spinning Methods to Fabricate Continuous Multifunctional Fibres for Bioapplications
ISBN: 9783030070236
Издательство: Springer
Классификация:







ISBN-10: 3030070239
Обложка/Формат: Soft cover
Страницы: 146
Вес: 0.29 кг.
Дата издания: 2018
Серия: Springer Theses
Язык: English
Издание: Softcover reprint of
Иллюстрации: 48 illustrations, color; 11 illustrations, black and white; xxxi, 146 p. 59 illus., 48 illus. in color.
Размер: 234 x 156 x 10
Читательская аудитория: General (us: trade)
Основная тема: Chemistry
Ссылка на Издательство: Link
Рейтинг:
Поставляется из: Германии
Описание: This book describes the development of three dimensional electroactive fibres using a novel coaxial wet-spinning approach from organic conductors in combination with non-conducting hydrogel polymers. This book also presents the characterization and evaluation of multiaxial biofibres in terms of mechanical, physical, electrochemical and biological properties, and explores their use in a diverse range of applications including implantable electrodes, drug delivery systems and energy-storage systems.In the first chapter, the author highlights the significance of engineering three dimensional fibres, introduces the involved hydrogels and organic conductors with emphasis on their biomedical application, and collects some of the previously established methods for fabrication of biofibres. In the second chapter, particular attention is given to the overall experimental fabrication methods and characterization analyses conducted in the work. Chapters three to five present the main findings of this work, in which readers will discover how novel hybrid hydrogel fibres with an inner core of chitosan and alginate were prepared and characterized, how graphene was incorporated into coaxial wet-spun biofibres, and how one-dimensional triaxial fibres were developed using a novel coaxial wet-spinning fibre production method and applied as potential battery devices. In the final chapter of this work, the author summarizes the main achievements of the work and outlines some recommendations for future research.
Дополнительное описание: Introduction.- General Experimental.- Preparation and Characterization of Novel Hybrid Hydrogel Fibres.- Fabrication of Coaxial Wet-spun Biofibres containing Graphene Core.- Development of One-Dimensional Triaxial Fibres as Potential Bio-Battery Structure



Developing Novel Spinning Methods to Fabricate Continuous Multifunctional Fibres for Bioapplications

Автор: Mirabedini
Название: Developing Novel Spinning Methods to Fabricate Continuous Multifunctional Fibres for Bioapplications
ISBN: 331995377X ISBN-13(EAN): 9783319953779
Издательство: Springer
Рейтинг:
Цена: 13974.00 р.
Наличие на складе: Есть у поставщика Поставка под заказ.

Описание:

This book describes the development of three dimensional electroactive fibres using a novel coaxial wet-spinning approach from organic conductors in combination with non-conducting hydrogel polymers. This book also presents the characterization and evaluation of multiaxial biofibres in terms of mechanical, physical, electrochemical and biological properties, and explores their use in a diverse range of applications including implantable electrodes, drug delivery systems and energy-storage systems.

In the first chapter, the author highlights the significance of engineering three dimensional fibres, introduces the involved hydrogels and organic conductors with emphasis on their biomedical application, and collects some of the previously established methods for fabrication of biofibres. In the second chapter, particular attention is given to the overall experimental fabrication methods and characterization analyses conducted in the work. Chapters three to five present the main findings of this work, in which readers will discover how novel hybrid hydrogel fibres with an inner core of chitosan and alginate were prepared and characterized, how graphene was incorporated into coaxial wet-spun biofibres, and how one-dimensional triaxial fibres were developed using a novel coaxial wet-spinning fibre production method and applied as potential battery devices. In the final chapter of this work, the author summarizes the main achievements of the work and outlines some recommendations for future research.


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