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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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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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Insights on Flexible Zinc-Ion Batteries from Lab Research to Commercialization

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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

Influence of TiO2 Nanoparticles on the Morphological, Thermal and Solution Properties of PVA/TiO2 Nanocomposite Membranes

TL;DR: In this article, the influence of nanoparticles on the morphological, thermal and solution properties of polyvinyl alcohol/titanium dioxide (PVA/TiO2) nanocomposite membranes was investigated using FESEM, XRD, DSC, TGA, rheometer, zeta sizer and contact angle meter.
Journal ArticleDOI

In situ polymerization of a conductive polymer in acellular muscle tissue constructs

TL;DR: Results indicate that in situ polymerization occurs throughout the tissue, converting it into an extensive acellular, non-antigenic substrate of interest for in vivo experiments related to nerve repair and bioartificial prosthesis.
Journal ArticleDOI

Highly crystalline as-polymerized poly(l-lactide)

TL;DR: In this paper, two new catalysts, tin(II)-bis(2,4-pentanedionato-O,O',O') (Zn(Acac)2) and zinc-bis( 2,2-dimethyl-3,5-heptanedionionato O,O'), were used to study the effect of the catalyst in the L-lactide polymerization on the nascent polymer structure.
Journal ArticleDOI

Investigation of structural and electrical properties of novel CuO–PVA nanocomposite films

TL;DR: In this paper, the effects of CuO nanoparticles on the structural, thermal and electrical properties of polyvinyl alcohol (PVA) thin films were investigated by a solution casting technique with different weight percentages.
Journal ArticleDOI

Synthesis and characterization of starch-graft-polycaprolactone as compatibilizer for starch/polycaprolactone blends

TL;DR: In this article, a compatibilized starch/polycaprolactone (starch-g-PCL) was used to enhance the compatibility of the starch/PCL blend.
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