Molecular Self Assembly

Molecular Self Assembly
Author: Makoto Fujita
Publsiher: Springer
Total Pages: 254
Release: 2003-09-04
Genre: Science
ISBN: 9783540465911

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Self-assembly is undoubtedly a topic of special interest in current chemistry and is related to very wide scientific areas. Recent progress in this field seems to be featured by the construction of well-defined discrete systems exploiting complementary hydrogen bonding as well as coordination bonding. Seven leading international experts introduce the current topics in this very interesting field, focusing on two major subjects: organic assemblies and inorganic assemblies. All researchers who are interested in molecular recognition, material science, nanotechnology, and supramolecular chemistry will welcome this book as an inspiring source for creative research ideas.

Molecular Self Assembly

Molecular Self Assembly
Author: Alex Li Dequan
Publsiher: CRC Press
Total Pages: 470
Release: 2012-12-20
Genre: Science
ISBN: 9789814364317

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In 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

Self assembling Biomaterials

Self assembling Biomaterials
Author: Helena S. Azevedo,Ricardo M. P. da Silva
Publsiher: Woodhead Publishing
Total Pages: 612
Release: 2018-04-17
Genre: Technology & Engineering
ISBN: 9780081020128

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Self-assembling biomaterials: molecular design, characterization and application in biology and medicine provides a comprehensive coverage on an emerging area of biomaterials science, spanning from conceptual designs to advanced characterization tools and applications of self-assembling biomaterials, and compiling the recent developments in the field. Molecular self-assembly, the autonomous organization of molecules, is ubiquitous in living organisms and intrinsic to biological structures and function. Not surprisingly, the exciting field of engineering artificial self-assembling biomaterials often finds inspiration in Biology. More important, materials that self-assemble speak the language of life and can be designed to seamlessly integrate with the biological environment, offering unique engineering opportunities in bionanotechnology. The book is divided in five parts, comprising design of molecular building blocks for self-assembly; exclusive features of self-assembling biomaterials; specific methods and techniques to predict, investigate and characterize self-assembly and formed assemblies; different approaches for controlling self-assembly across multiple length scales and the nano/micro/macroscopic properties of biomaterials; diverse range of applications in biomedicine, including drug delivery, theranostics, cell culture and tissue regeneration. Written by researchers working in self-assembling biomaterials, it addresses a specific need within the Biomaterials scientific community. Explores both theoretical and practical aspects of self-assembly in biomaterials Includes a dedicated section on characterization techniques, specific for self-assembling biomaterials Examines the use of dynamic self-assembling biomaterials

Kinetic Control in Synthesis and Self Assembly

Kinetic Control in Synthesis and Self Assembly
Author: Munenori Numata,Shiki Yagai,Toshiyuki Hamura
Publsiher: Academic Press
Total Pages: 324
Release: 2018-11-23
Genre: Science
ISBN: 9780128121276

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Kinetic Control in Synthesis and Self-Assembly provides a unique overview of the fundamental principles, novel methods and practical applications for researchers across organic synthesis, supramolecular chemistry and materials sciences. The book examines naturally occurring molecular systems in which kinetic processes are more ubiquitous than thermodynamic processes, also exploring the control of reactions and molecular self-assemblies, through kinetic processes, in artificial systems. These methods currently play a crucial role for tuning materials functions. From organic synthesis, to supramolecular assemblies, and from restricted spaces, to material synthesis for hierarchical structures, the book offers valuable coverage for researchers across disciplines. Interesting topics include how to regulate kinetic pathways more precisely, essential molecular design for kinetic traps, and how molecular environments surrounding molecules (i.e., solvent, temperature, and pressure effects) influence kinetic control in reactions and self-assemblies. Describes the nature and potential applications of kinetic processes compared to thermodynamic processes Presents information useful to researchers active in molecular synthesis and self-assembly toward materials Collates coverage of kinetic control for synthesis and self-assembly, treated separately in literature

Molecular Forces and Self Assembly

Molecular Forces and Self Assembly
Author: Barry W. Ninham,Pierandrea Lo Nostro
Publsiher: Cambridge University Press
Total Pages: 0
Release: 2010-04-01
Genre: Technology & Engineering
ISBN: 0521896002

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Challenging the cherished notions of colloidal theory, Barry Ninham and Pierandrea Lo Nostro confront the scientific lore of molecular forces and colloidal science in an incisive and thought-provoking manner. The authors explain the development of these classical theories, discussing amongst other topics electrostatic forces in electrolytes, specific ion effects and hydrophobic interactions. Throughout the book they question assumptions, unearth flaws and present new results and ideas. From such analysis, a qualitative and predictive framework for the field emerges; the impact of this is discussed in the latter half of the book through force behaviour in self assembly. Here, numerous diverse phenomena are explained, from surfactants to biological applications, all richly illustrated with pertinent, intellectually stimulating examples. With mathematics kept to a minimum, and historic facts and anecdotes woven through the text, this is a highly engaging and readable treatment for students and researchers in science and engineering.

A Matter of Size

A Matter of Size
Author: National Research Council,Division on Engineering and Physical Sciences,National Materials Advisory Board,Committee to Review the National Nanotechnology Initiative
Publsiher: National Academies Press
Total Pages: 200
Release: 2006-11-30
Genre: Technology & Engineering
ISBN: 0309180279

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The National Nanotechnology Initiative (NNI) was created in 2000 to focus and coordinate the nanoscience and nanotechnology research and development (R&D) activities being funded by several federal agencies. The purpose of the NNI is to marshal these research activities in order to accelerate responsible development and deployment of nanotechnology for economic benefit and national security. To take stock of the progress of the NNI, Congress, in P. L. 108-153, the 21st Century Nanotechnology Research and Development Act, directed the National Research Council to carry out a review of the program every three years. This report presents the results of the first of those reviews, which addresses the economic impact of nanotechnology developments and provides a benchmark of U.S. R&D efforts relative to those undertaken by foreign competitors. In addition, the report offers an assessment of the current status of responsible development of nanotechnology and comments on the feasibility of molecular self-assembly.

Molecular Self assembly

Molecular Self assembly
Author: James P. Comrie
Publsiher: Unknown
Total Pages: 0
Release: 2011
Genre: Nanostructured materials
ISBN: 1611224128

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Molecular self-assembly is the process by which molecules adopt a defined arrangement without guidance or management from an outside source. Molecular assembly into well-defined nanoscopic/meoscopic structures plays a significant role in nanobiological and nanomaterial sciences, and thus has attracted a great deal of attention in both fundamental and applied studies. This book presents current research in the study of molecular self-assembly, including directed molecular assembly on metal surfaces; controlled self-assembly of macrocyclic molecules based on calixarenes in functional supramolecular entities; the self-assembly, chirality and polymorphism of bacterial flagellar filament; self-assembly as a key process in bottom-up technologies from nano to microscales; and, the supramolecular helix formation from designed peptides coded and non-coded amino acids.

Macromolecular Self Assembly

Macromolecular Self Assembly
Author: Laurent Billon,Oleg Borisov
Publsiher: John Wiley & Sons
Total Pages: 290
Release: 2016-09-06
Genre: Technology & Engineering
ISBN: 9781118887127

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This book describes techniques of synthesis and self-assembly of macromolecules for developing new materials and improving functionality of existing ones. Because self-assembly emulates how nature creates complex systems, they likely have the best chance at succeeding in real-world biomedical applications. • Employs synthetic chemistry, physical chemistry, and materials science principles and techniques • Emphasizes self-assembly in solutions (particularly, aqueous solutions) and at solid-liquid interfaces • Describes polymer assembly driven by multitude interactions, including solvophobic, electrostatic, and obligatory co-assembly • Illustrates assembly of bio-hybrid macromolecules and applications in biomedical engineering