Multifunctional Polymeric Nanocomposites Based on Cellulosic Reinforcements

Nonfiction, Science & Nature, Technology, Textiles & Polymers, Material Science
Cover of the book Multifunctional Polymeric Nanocomposites Based on Cellulosic Reinforcements by Debora Puglia, Elena Fortunati, José M. Kenny, Elsevier Science
View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart
Author: Debora Puglia, Elena Fortunati, José M. Kenny ISBN: 9780323417396
Publisher: Elsevier Science Publication: July 11, 2016
Imprint: William Andrew Language: English
Author: Debora Puglia, Elena Fortunati, José M. Kenny
ISBN: 9780323417396
Publisher: Elsevier Science
Publication: July 11, 2016
Imprint: William Andrew
Language: English

Multifunctional Polymeric Nanocomposites Based on Cellulosic Reinforcements introduces the innovative applications of polymeric materials based on nanocellulose, and covers extraction methods, functionalization approaches, and assembly methods to enable these applications. The book presents the state-of-the-art of this novel nano-filler and how it enables new applications in many different sectors, beyond existing products.

With a focus on application of nano-cellulose based polymers with multifunctional activity, the book explains the methodology of nano-cellulose extraction and production and shows the potential performance benefits of these particular nanostructured polymers, for applications across different sectors, including food active packaging, energy-photovoltaics, biomedical, and filtration. The book describes how the different methodologies, functionalization, and organization at the nano-scale level could contribute to the design of required properties at macro level.

The book studies the interactions between the main nano-filler with other active systems and how this interaction enables multi-functionality in the produced materials. The book is an indispensable resource for the growing number of scientists and engineers interested in the preparation and novel applications of nano-cellulose, and for industrial scientists active in formulation and fabrication of polymer products based on renewable resources.

  • Provides insight into nanostructure formation science, and processing of polymeric materials and their characterization
  • Offers a strong analysis of real industry needs for designing the materials
  • Provides a well-balanced structure, including a light introduction of basic knowledge on extraction methods, functionalization approaches, and assembling focused to applications
  • Describes how different methodologies, functionalization, and organization at the nano-scale level could contribute to the design of required properties at macro level
View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart

Multifunctional Polymeric Nanocomposites Based on Cellulosic Reinforcements introduces the innovative applications of polymeric materials based on nanocellulose, and covers extraction methods, functionalization approaches, and assembly methods to enable these applications. The book presents the state-of-the-art of this novel nano-filler and how it enables new applications in many different sectors, beyond existing products.

With a focus on application of nano-cellulose based polymers with multifunctional activity, the book explains the methodology of nano-cellulose extraction and production and shows the potential performance benefits of these particular nanostructured polymers, for applications across different sectors, including food active packaging, energy-photovoltaics, biomedical, and filtration. The book describes how the different methodologies, functionalization, and organization at the nano-scale level could contribute to the design of required properties at macro level.

The book studies the interactions between the main nano-filler with other active systems and how this interaction enables multi-functionality in the produced materials. The book is an indispensable resource for the growing number of scientists and engineers interested in the preparation and novel applications of nano-cellulose, and for industrial scientists active in formulation and fabrication of polymer products based on renewable resources.

More books from Elsevier Science

Cover of the book The Finite Element Method for Fluid Dynamics by Debora Puglia, Elena Fortunati, José M. Kenny
Cover of the book Biology of Disease Vectors by Debora Puglia, Elena Fortunati, José M. Kenny
Cover of the book Gas Well Deliquification by Debora Puglia, Elena Fortunati, José M. Kenny
Cover of the book Epigenetic Shaping of Sociosexual Interactions: From Plants to Humans by Debora Puglia, Elena Fortunati, José M. Kenny
Cover of the book Polyphenols in Plants by Debora Puglia, Elena Fortunati, José M. Kenny
Cover of the book Agricultural Systems: Agroecology and Rural Innovation for Development by Debora Puglia, Elena Fortunati, José M. Kenny
Cover of the book Calcium and Chemical Looping Technology for Power Generation and Carbon Dioxide (CO2) Capture by Debora Puglia, Elena Fortunati, José M. Kenny
Cover of the book Immunity and Inflammation in Health and Disease by Debora Puglia, Elena Fortunati, José M. Kenny
Cover of the book Handbook of Industrial Hydrocarbon Processes by Debora Puglia, Elena Fortunati, José M. Kenny
Cover of the book Quantifying the User Experience by Debora Puglia, Elena Fortunati, José M. Kenny
Cover of the book Developments in Palygorskite-Sepiolite Research by Debora Puglia, Elena Fortunati, José M. Kenny
Cover of the book Advances in Fermented Foods and Beverages by Debora Puglia, Elena Fortunati, José M. Kenny
Cover of the book Starch: Basic Science to Biotechnology by Debora Puglia, Elena Fortunati, José M. Kenny
Cover of the book Mesoporous Silica-based Nanomaterials and Biomedical Applications - Part B by Debora Puglia, Elena Fortunati, José M. Kenny
Cover of the book Mems for Biomedical Applications by Debora Puglia, Elena Fortunati, José M. Kenny
We use our own "cookies" and third party cookies to improve services and to see statistical information. By using this website, you agree to our Privacy Policy