Reprint

Advanced Science and Technology of Polymer Matrix Nanomaterials

Edited by
February 2024
182 pages
  • ISBN978-3-7258-0272-2 (Hardback)
  • ISBN978-3-7258-0271-5 (PDF)

This book is a reprint of the Special Issue Advanced Science and Technology of Polymer Matrix Nanomaterials that was published in

Chemistry & Materials Science
Engineering
Physical Sciences
Summary

A masterpiece in the realm of polymer science, "Advanced Science and Technology of Polymer Matrix Nanomaterials" presents a comprehensive exploration of the cutting-edge advancements in polymer matrix nanomaterials. This reprint delves into the remarkable progress made in the synthesis, characterization, and applications of these materials, showcasing their immense potential to revolutionize various industries. With meticulous attention to detail and a profound understanding of the subject matter, this seminal work provides a concise yet comprehensive overview of the field. From the fundamental principles to the latest research breakthroughs, it covers a wide spectrum of topics, including nanocomposites, nanofibers, and others. The description of the Reprint serves as a concise summary, intended to capture readers' attention and ignite their curiosity. It serves as a testament to the significant contribution this reprint makes in the field of polymer science, unveiling new avenues for scientific exploration and technological innovation.Through its eloquent prose and meticulous analysis, "Advanced Science and Technology of Polymer Matrix Nanomaterials" establishes itself as an indispensable resource for scholars, scientists, and professionals seeking to deepen their understanding of this exciting and rapidly evolving field.

Format
  • Hardback
License and Copyright
© 2022 by the authors; CC BY-NC-ND license
Keywords
n/a; charge-transfer; molecular electronics; transannular π–π interaction; [2.2]paracyclophane-1,9-dienes (PCD); solid-liquid mixing; rotor-stator agitator; suspension quality; liquid level stability; power consumption; CFD; poly(ester imide); hydrophobic; mesoporous; silica; dielectric; biopolymers; biopolymeric nanoparticles; biomedical; tissue engineering; drug delivery; wetting gradient; suppressed viscous fingering; porous media; multiphase flow; immiscible fluid displacement; lattice Boltzmann simulation; polymer nanocomposite; dielectric polymer; poly(1-vinyl-1,2,4-triazole); thermoelectric tellurium nanoparticles; DC electrical conductivity; A549 cells; dynamic light scattering; microplastic; surface plasmon resonance; unilamellar vesicles; composites; segregated network; electrical conductivity; thermal conductivity; graphene; nanoparticles; waterborne polyurethane; UV aging; mechanical resistance; polyester fabrics; wave absorption; thermal conduction; 5G base station; packaging materials; epoxy resin; n/a