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Smart Electrospun Materials
Thriving technological advancements in various distinct disciplines demand for the continuous expansion of innovation and implementation to step toward civilization enlightenment. This progressive scientific scheme looks for smart technological materials. Electrospun materials have been extensively adopted in various fields for regular applications due to their exceptional properties, but currently researchers have initiated their exercise in smart materials by incorporating various functionalities. These smart materials are advantageous over conventional because of their ability to merge divergent specialties and dispensing numerous novel materials with ameliorated properties and enormous future scope. Electrospinning is a voltage‐driven procedure of drawing ultrathin fibers having a diameter in submicrometer (<1 μm) to nanometer (~1–100 nm) range with controlled functionalities and morphology. These electrospun materials can take the form of electrospun membranes, electrospun mats, electrospun composites, etc., by exploiting electrospun fiber alignment, folding, and stacking. In recent decades, the breakthrough of smart electrospun materials has unlocked the door of variety of researches and implementation in the field of tissue engineering, controlled drug delivery, wearable and flexible electronics, smart food packaging labels, e‐textiles, heat management food packaging, environment remediation, etc. This chapter aims to cover contemporary smart electrospun materials and their applications in different industrial sectors.
Smart Electrospun Materials
Thriving technological advancements in various distinct disciplines demand for the continuous expansion of innovation and implementation to step toward civilization enlightenment. This progressive scientific scheme looks for smart technological materials. Electrospun materials have been extensively adopted in various fields for regular applications due to their exceptional properties, but currently researchers have initiated their exercise in smart materials by incorporating various functionalities. These smart materials are advantageous over conventional because of their ability to merge divergent specialties and dispensing numerous novel materials with ameliorated properties and enormous future scope. Electrospinning is a voltage‐driven procedure of drawing ultrathin fibers having a diameter in submicrometer (<1 μm) to nanometer (~1–100 nm) range with controlled functionalities and morphology. These electrospun materials can take the form of electrospun membranes, electrospun mats, electrospun composites, etc., by exploiting electrospun fiber alignment, folding, and stacking. In recent decades, the breakthrough of smart electrospun materials has unlocked the door of variety of researches and implementation in the field of tissue engineering, controlled drug delivery, wearable and flexible electronics, smart food packaging labels, e‐textiles, heat management food packaging, environment remediation, etc. This chapter aims to cover contemporary smart electrospun materials and their applications in different industrial sectors.
Smart Electrospun Materials
Inamuddin (Herausgeber:in) / Boddula, Rajender (Herausgeber:in) / Ahamed, Mohd Imran (Herausgeber:in) / Asiri, Abdullah M. (Herausgeber:in) / Sharma, Gaurav (Autor:in) / Rastogi, Shivani (Autor:in) / Kandasubramanian, Balasubramanian (Autor:in)
14.04.2020
28 pages
Aufsatz/Kapitel (Buch)
Elektronische Ressource
Englisch
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