Clay Nanoparticles: Properties and Applications sets out the major properties of clay nanoparticles and their technological applications. The first part of the book focuses on the characterization of nanoclays, including layered, fibrous and tubular clay minerals. The second part illustrates the current and potential applications of nanoclays within material science and biotechnology. These include the development of geopolymers and bionanocomposites based on sustainable polymers filled with ecocompatible nanoclay. The potential use of nanoclays as flame retardants is also discussed, along with the correlation between the properties and potential applications of several nanoclay types.
In particular, the applications explored include nanoclays as drug delivery systems and for environmental protection. The book provides a complete and multidisciplinary exploration of nanoclays, highlighting a range of perspectives within current nanotechnology research.
- Assesses the advantages of using nanoclays instead of conventional clay materials in product design
- Describes the major characterization techniques - both experimental and computational - for nanoclays
- Explores new fabrication techniques based on pristine and modified clay nanoparticles that are being used both in materials science and biotechnology
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Part I Properties of clay nanoparticles
1. Geological overview of clay nanoparticles CRISTINA VILLANOVA-DE-BENAVENT
2. Structural characterization of clay systems by small-angle scattering LEONARDO CHIAPPISI
3. Halloysite nanotubes (HNTs)/polymer nanocomposites: thermal degradation and flame retardancy HENRI VAHABI, RODOLPHE SONNIER, AURÉLIE TAGUET, BELKACEM OTAZAGHINE, MOHAMMAD REZA SAEB AND GÜNTER BEYER
4. Colloidal stability and self-assembling behavior of nanoclays LORENZO LISUZZO, GIUSEPPE CAVALLARO, FILIPPO PARISI, SERENA RIELA, STEFANA MILIOTO AND GIUSEPPE LAZZARA
5. Organophilic nature of nanoclay KAUSIK DANA AND MADHUCHHANDA SARKAR
6. Computational modeling of nanoclays EVA SCHOLTZOVÁ
Part II Technological applications of clay nanoparticles
7. Flame retardant potential of clay nanoparticles AYESHA KAUSAR
8. Nanoclays in drug delivery systems RAQUEL DE MELO BARBOSA, MARIANNA ARAÚJO FERREIRA, LYGHIA MARIA ARAÚJO MEIRELLES, NICOLE ZORATO AND FERNANDA NERVO RAFFIN
9. Decontamination application of nanoclays HUIJUAN GUAN AND YAFEI ZHAO
10. Clays in cement production from the nanoscale LIDIA NATALIA TRUSILEWICZ
11. Improving the thermal, termite resistance and anti-wetting properties of tropical timber using a polymethyl acrylate/ halloysite coating NISHAL ASHVIN SOLANKI, POORIA PASBAKHSH AND ALI RASHIDI
12. Halloysite nanoclay for development of heterogeneous catalysts SAMAHE SADJADI
13. Covalently modified nanoclays: synthesis, properties and applications MARINA MASSARO, GIUSEPPE CAVALLARO, GIUSEPPE LAZZARA AND SERENA RIELA
Cavallaro is a Assistant Professor, University of Palermo, Department of Physics and Chemistry.. His research focuses in the areas of materials chemistry, polymer chemistry, and nanotechnology.
Fakhrullin, Rawil F.
Rawil F. Fakhrullin received his MSc from Kazan State University in 2003, later receiving a PhD in Biochemistry form Kazan State University (2006), and DSc in Microbiology from Kazan Federal University (2011). He also received an MSc degree in Chemistry with Nanotechnology from University of Hull, UK. He worked as a visiting scientist at the University of Hull (UK), University of Sheffield (UK) and Yeditepe University (Istanbul, Turkey). Currently, hProfessor, Bionanotechnology Lab, Institute of Fundamental Medicine and Biology, Kazan Federal University, Kazan, Republic of Tatarstan, Russian Federation . His research interests are focused on development of novel biomimetic materials (including functionalised cells), cell-based therapy, drug delivery, controllable assembly of living cells into multicellular clusters, fabrication of cell-based biosensors, and nanotoxicity.
Associate Professor, Department of Mechanical Engineering, School of Engineering, Monash University Malaysia. His research concerns the preparation, characterization and modelling of polymer nanocomposites for various applications including water filtration, automotive, built environment, 3D printing, biomaterials and self-healing.