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International interest in nanoscience research has flourished in recent years, as it becomes an integral part in the development of future technologies. The diverse, interdisciplinary nature of nanoscience means effective communication between disciplines is pivotal in the successful utilization of the science. Nanochemistry: A Chemical Approach to Nanomaterials is the first textbook for teaching nanochemistry and adopts an interdisciplinary and comprehensive approach to the subject. It presents a basic chemical strategy for making nanomaterials and describes some of the principles of…mehr
International interest in nanoscience research has flourished in recent years, as it becomes an integral part in the development of future technologies. The diverse, interdisciplinary nature of nanoscience means effective communication between disciplines is pivotal in the successful utilization of the science. Nanochemistry: A Chemical Approach to Nanomaterials is the first textbook for teaching nanochemistry and adopts an interdisciplinary and comprehensive approach to the subject. It presents a basic chemical strategy for making nanomaterials and describes some of the principles of materials self-assembly over 'all' scales. It demonstrates how nanometre and micrometre scale building blocks (with a wide range of shapes, compositions and surface functionalities) can be coerced through chemistry to organize spontaneously into unprecedented structures, which can serve as tailored functional materials. Suggestions of new ways to tackle research problems and speculations on how to think about assembling the future of nanotechnology are given. Primarily designed for teaching, this book will appeal to graduate and advanced undergraduate students. It is well illustrated with graphical representations of the structure and form of nanomaterials and contains problem sets as well as other pedagogical features such as further reading, case studies and a comprehensive bibliography.
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Autorenporträt
Geoffrey A Ozin obtained his undergraduate degree at Kings College London and his graduate degree at Oriel College Oxford. Following post-doctoral research as an ICI Fellow at Southampton University he joined the University of Toronto where he is now Government of Canada Research Chair in Materials Chemistry and University Professor. He is also Honorary Professor at The Royal Institution of Great Britain and University College London, as well as a Member of the London Centre for Nanotechnology. Andre C Arsenault is Chief Technology Officer and cofounder of Opalux Inc., a Toronto-based company developing products based on opal technology. He completed his honours degree in Biological Chemistry at the University of Toronto in 2001 followed by a PhD in the groups of Geoffrey A. Ozin and Ian Manners in 2006. He is currently the author of 21 scientific publications, and the holder of one US patent. His work has appeared several times in the news media. Ludovico Cademartiri is a PhD student in the group of Geoffrey A. Ozin at the University of Toronto. He completed his Laurea cum laude in Materials Science at the University of Parma, Italy in 2002 before joining the graduate program in interdisciplinary chemistry at the University of Toronto. He is the author of 12 scientific publications and has been awarded the CRC Graduate Prize in Chemistry and the CSC DIC Prize for Graduate Work in Inorganic Chemistry. He is currently working on his Postdoctural fellowship with Professor George Whitesides at Harvard University.
Inhaltsangabe
Preface - In the Beginning there was Nano Nanochemistry Basics Chemical Patterning and Lithography Layer-By-Layer Self-Assembly Nanocontact Printing and Writing Nanorod, Nanotube, Nanowire Self-Assembly Nanocluster Self-Assembly Microspheres - Colours from the Beaker Microporous and Mesoporous Materials Self-Assembling Block Copolymers Biomaterials and Bioinspiration Self-Assembly of Large Building Blocks Nano and Beyond Nanochemistry and Nanolabs Subject Index
Preface - In the Beginning there was Nano Nanochemistry Basics Chemical Patterning and Lithography Layer-By-Layer Self-Assembly Nanocontact Printing and Writing Nanorod, Nanotube, Nanowire Self-Assembly Nanocluster Self-Assembly Microspheres - Colours from the Beaker Microporous and Mesoporous Materials Self-Assembling Block Copolymers Biomaterials and Bioinspiration Self-Assembly of Large Building Blocks Nano and Beyond Nanochemistry and Nanolabs Subject Index
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