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 #  AuthorTitleAccn#YearItem Type Claims
1 Salam, Haipan Bioepoxy/Clay Nanocomposites I11922 2021 eBook  
2 Mousa, Mohanad Multiscaled PVA Bionanocomposite Films I11697 2021 eBook  
3 Abdullah, Zainab Waheed Polyvinyl Alcohol/Halloysite Nanotube Bionanocomposites as Biodegradable Packaging Materials I09609 2020 eBook  
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TitleBioepoxy/Clay Nanocomposites : Fabrication Optimisation, Properties and Modelling
Author(s)Salam, Haipan;Dong, Yu
PublicationSingapore, Springer Nature Singapore, 2021.
DescriptionXII, 237 p. 97 illus., 85 illus. in color : online resource
Abstract NoteThis book highlights current advanced developments in bioepoxy and bioepoxy/clay nanocomposites and an optimisation of material formulation and processing parameters on fabrication of bioepoxy/clay nanocomposites in order to achieve the highest mechanical properties in relation to their morphological structures, thermal properties, as well as biodegradability and water absorption, which is based on the use of Taguchi design of experiments with the consideration of technical and economical point of view. It also elaborates holistic theoretical modelling of tensile properties of such bionanocomposites with respect to the effect of contents of nanoclay fillers and epoxydised soybean oil (ESO).
ISBN,Price9789811672972
Keyword(s)1. Bioremediation 2. Biotechnology 3. Characterization and Analytical Technique 4. EBOOK 5. EBOOK - SPRINGER 6. Environmental engineering 7. Environmental Engineering/Biotechnology 8. Materials???Analysis 9. Microelectromechanical systems 10. Microsystems and MEMS 11. Microtechnology 12. Nanochemistry 13. Nanophysics 14. NANOSCIENCE 15. POLYMERS
Item TypeeBook
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I11922     On Shelf    

2.     
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TitleMultiscaled PVA Bionanocomposite Films : Characterisation and Nanoscale Modelling
Author(s)Mousa, Mohanad;Dong, Yu
PublicationSingapore, Springer Nature Singapore, 2021.
DescriptionXI, 179 p. 84 illus., 70 illus. in color : online resource
Abstract NoteThis book highlights a novel and holistic approach to multiscaled PVA bionanocomposite films used for electrical sensing, medical and packaging applications. With a combination of material characterization and modeling to understand the effect of nanoparticle size and shape, as well as 3D interphase properties and features such as interphase modulus and nanoscale dimensions, this book substantiates how excellent mechanical and thermal properties of these materials are achieved. Also it addresses the importance of using economical and ecofriendly bionanocomposites as potential green materials to support the goal of environmental sustainability with multifunctional properties
ISBN,Price9789811587719
Keyword(s)1. Biomaterials 2. Ceramic materials 3. Ceramics 4. Characterization and Analytical Technique 5. EBOOK 6. EBOOK - SPRINGER 7. Materials???Analysis 8. Microelectromechanical systems 9. Microsystems and MEMS 10. Microtechnology 11. Surface and Interface and Thin Film 12. Surfaces (Physics) 13. Surfaces (Technology) 14. Surfaces, Interfaces and Thin Film 15. THIN FILMS
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I11697     On Shelf    

3.    
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TitlePolyvinyl Alcohol/Halloysite Nanotube Bionanocomposites as Biodegradable Packaging Materials
Author(s)Abdullah, Zainab Waheed;Dong, Yu
PublicationSingapore, Springer Singapore, 2020.
DescriptionIX, 164 p. 116 illus., 60 illus. in color : online resource
Abstract NoteThis book focuses on the preparation and characterisation of polyvinyl alcohol (PVA)/ halloysite nanotube (HNT) bionanocomposite films with different HNT contents for potential use in food packaging. It examines the effect of material composition and nanofiller content on mechanical, thermal and optical properties in relation to their morphological structures, and also comprehensively describes the water resistance, biodegradation and migration rates of such bionanocomposites, as well as their barrier properties in terms of water vapour transmission, and water vapour, air and oxygen permeabilities. Further, this book discusses the use of Nielsen model and Cussler model to predict the relative permeability of bionanocomposites, demonstrating that Nielsen model is more effective and in better agreement with experimental data obtained. Lastly, it discusses the application of bionanocomposite films in food packaging to prolong the shelf life of freshly cut avocados and peaches
ISBN,Price9789811573569
Keyword(s)1. Biotechnology 2. Characterization and Evaluation of Materials 3. EBOOK 4. EBOOK - SPRINGER 5. Environmental engineering 6. Environmental Engineering/Biotechnology 7. Food Science 8. Food???Biotechnology 9. MATERIALS SCIENCE 10. Nanochemistry 11. Nanoscale science 12. Nanoscale Science and Technology 13. NANOSCIENCE 14. Nanostructures 15. NANOTECHNOLOGY 16. Nanotechnology and Microengineering
Item TypeeBook
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I09609     On Shelf    

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