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OverviewIn the past several decades, molecular self-assembly has emerged as one of the main themes in chemistry, biology, and materials science. This book compiles and details cutting-edge research in molecular assemblies ranging from self-organized peptide nanostructures and DNA-chromophore foldamers to supramolecular systems and metal-directed assemblies, even to nanocrystal superparticles and self-assembled microdevices Full Product DetailsAuthor: Alex Li Dequan (Washington State University, Pullman, USA)Publisher: Pan Stanford Publishing Pte Ltd Imprint: Pan Stanford Publishing Pte Ltd Weight: 1.054kg ISBN: 9789814316774ISBN 10: 9814316776 Pages: 470 Publication Date: 20 December 2012 Audience: College/higher education , Professional and scholarly , Tertiary & Higher Education , Professional & Vocational Format: Hardback Publisher's Status: Active Availability: In Print ![]() This item will be ordered in for you from one of our suppliers. Upon receipt, we will promptly dispatch it out to you. For in store availability, please contact us. Table of ContentsReviewsAuthor InformationAlex D. Q. Li received his BS in polymer chemistry at Jilin University, China, his MS and Ph.D. in inorganic chemistry from Northwestern University, Evanston, Illinois. After graduation, he was honored with a postdoctoral director fellow at Los Alamos National Laboratory, Los Alamos, New Mexico, where he later became a technical staff member. At Los Alamos, he led a research group working on chemistry of materials and microsensors for volatile organic compounds, which received R&D 100 award in 1995. Inspired by teaching and innovative research, Dr. Li joined the faculty at Washington State University (WSU) in 2000, where he initiated his research on foldamers and later received the Arnold and Mabel Beckman Young Investigator award. His research areas include macromolecular design and engineering, advanced materials synthesis, bionanotechnology, self-assembly, and supramolecular systems. The philosophy in his group is to use novel methods to construct advanced materials, with an emphasis on molecular design and innovative approaches to demonstrate new concepts, principles, and applications in the chemical, physical, and biological sciences. Tab Content 6Author Website:Countries AvailableAll regions |