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A journey through the diverse world of nanotechnology research and development, covering 122 specific research projects taking place in laboratories around the world.
This new publication brings together contemporary approaches for designing nanostructures that employ naturally derived self-assembling motifs as synthetic platforms.
The first book on bioactive nanoceramics to unite the many multidisciplinary concepts useful for those working in bioceramics today.
This book brings the phage display technique closer to specialists in areas of medicine, science and technology, where phage-derived nanomaterials can be most beneficial.
This book provides comprehensive information on one of the most important facets of polymer nanocomposites technology: synthesis in emulsion and suspension.
Provides a broad, multi-disciplinary platform to discuss and learn more about the fascinating properties of nanoporous gold from an inter-disciplinary perspective.
There has been significant growth in the field of nanofluidics, where nanoscale analytical instruments employ micromachined features and are able to manipulate fluid samples with high precision and efficiency and have many advantages over their conventional (larger) analogues. The new edition of Nanofluidics has been fully revised and updated with the latest advancements and applications. With a focus on bioanalysis, specific applications are given with case studies. The end of each chapter now also features a methodology section to explain experimental protocols and ΓÇ£tips and tricksΓÇ¥.The editors draw on an international authorship and provide a handbook for the community. Written at an accessible level the book is suitable for both experts and non-experts alike.
This book introduces the concept of "Nanoarchitechtonics", a term coined by Dr Masakazu Aono to describe the correct manipulation of nanoscale materials in the creation of nano-devices and applications.
This is an important handbook for anyone wishing to get a comprehensive view of graphene nanocomposites and bring established methodologies into their laboratory.
The purpose of this book is to summarize the basic chemical aspects for obtaining multifunctional carbon nanotube-based polymer composites, but also to highlight some of the most remarkable advances that occurred in the field during the last recent years.
Professional conservators and scientists alike will find this essential reading, as will postgraduate students in the fields of materials and colloid science, art restoration and nanoscience.
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