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Book ChapterDOI

Biopolymer Composites With High Dielectric Performance: Interface Engineering

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TLDR
In this article, the preparation and dielectric behavior of various biopolymer composites is presented, including metal nanoparticles and carbon-based nanofillers such as carbon nanotubes, graphene, etc.
Abstract
In recent years, there is a growing interest in studying the dielectric behavior of biopolymer composites due to their potential application as a dielectric material in various electronic devices such as microchips, transformers, and circuit boards. Conducting electroactive polymer composites have also been investigated for various potential applications which include biological, biomedical, flexible electrodes, display devices, biosensors, and cells for tissue engineering. In this chapter, the preparation and dielectric behavior of various biopolymer composites is presented. These biopolymer composites generally consist of nanoscale metal nanoparticles and carbon-based nanofillers such as carbon nanotubes, graphene, graphene oxide (GO), etc., dispersed into the polymer matrix. The physical and chemical properties of these fillers and their interactions with polymers have a significant effect on the microstructure and the final properties of nanocomposites. The biopolymer composites with excellent dielectric properties show great promise as an energy storage dielectric layer in high-performance capacitor applications such as embedded capacitors. This chapter highlights some of the examples of such biopolymer composites; their processing and dielectric behavior will be discussed in detail.

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Journal Article

Alignment of Boron Nitride Nanotubes in Polymeric Composite Films for Thermal Conductivity Improvement

TL;DR: In this article, Boron nitride nanotubes (BNNT)/polyvinyl alcohol (PVA) composite fibers were fabricated via electrospinning so that all BNNTs became aligned in the fiber casting direction.
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TL;DR: In this paper, the potential and market stability of gelatin has been discussed and its recent studies are summarised in this paper, focusing on assessing the general utilities of the various sources of collagen as gelatin derivatives.
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Insights on Flexible Zinc-Ion Batteries from Lab Research to Commercialization

TL;DR: In this article, the authors summarized the recent progress in polymer electrolytes for flexible ZIBs, especially hydrogel electrolytes, including their synthesis and characterization, and provided an insight from lab research to commercialization, relevant challenges, device configurations, and life cycle analysis.
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Additive manufacturing in drug delivery applications: A review.

TL;DR: A systematic review methodology based on the application of this novel technology in the field of drug delivery along with the manufacturing of polypills with varied release profiles and geometries is carried out.
References
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Journal ArticleDOI

Biodegradable polymers/bamboo fiber biocomposite with bio-based coupling agent

TL;DR: In this paper, the effects of lysine-based diisocyanate (LDI) as a coupling agent on the properties of biocomposite from poly (lactic acid) (PLA), poly (butylene succinate) (PBS) and bamboo fiber (BF) were investigated.
Journal ArticleDOI

Structure and Properties of Poly(vinyl alcohol)/Na+ Montmorillonite Nanocomposites

TL;DR: In this paper, a composite structure study revealed a coexistence of exfoliated and intercalated MMT layers, especially for low and moderate silicate loadings, which promoted a new crystalline phase different than the one of the respective neat PVA, characterized by higher melting temperature and a different crystal structure.
Journal ArticleDOI

Manufacturing process of cellulose whiskers/polylactic acid nanocomposites

TL;DR: In this paper, cellulose whiskers separated from commercially available microcrystalline cellulose (MCC) and polylactic acid (PLA) were used to develop novel nanostructured biocomposites by compounding extrusion.
Journal ArticleDOI

Semiconducting and Metallic Polymers: The Fourth Generation of Polymeric Materials

TL;DR: When asked to explain the importance of the discovery of conducting polymers, I offer two basic answers: first they did not (could not?) exist, and second, that they offer a unique combination of properties not available from any other known materials.
Journal ArticleDOI

Discovery of cellulose as a smart material

TL;DR: In this paper, the authors further expand the current knowledge in cellulose applications and technologies by reporting their discovery of cellulose as a smart material that can be used for biomimetic sensor/actuator devices and micro-electromechanical systems.
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