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Biological Assembly and Synthesis of Inorganic Nanostructures

Biological Assembly and Synthesis of Inorganic Nanostructures
Author: Joun Lee
Publisher:
Total Pages: 179
Release: 2009
Genre: Amino acids
ISBN:

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Science technologies have been in pursuit of smaller, faster and more efficient devices and enormous efforts made by myriad numbers of scientists have provided us with electronics in reduced volumes with improved performances. Miniaturization of electronic circuits down to micrometer scale has been well-developed as industrial processes and it is easy to witness electronic products containing integrated circuits consisted of microstructures in our everyday life. However, miniaturization of circuit components down to nanometer scale has revealed new challenges not only for difficult handling of diminutive structures but also for unusual physical properties of nanomaterials. Countless numbers of conventional chemical and physical studies have been dedicated to exploit the benefit of the unique properties of nanostructures by developing efficient techniques for controlled synthesis and assembly of nanostructures. However, environmental concerns of using toxic solvent systems and high energy-consuming processes, and pursuit of highly selective molecular interactions for highly precise assemblies have averted the eyes of scientists to biological materials. Biorecognition properties of biological materials are attractive for achieving programmed self-assembly of nanostructures and biomolecules with metal-reducing ability are very inviting for developments of environmentally-acceptable synthesis processes.


Biological Assembly of Hybrid Inorganic Nanomaterials (Preprint).

Biological Assembly of Hybrid Inorganic Nanomaterials (Preprint).
Author:
Publisher:
Total Pages: 15
Release: 2007
Genre:
ISBN:

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The assembly of two or more inorganic nanoparticles results in hybrid materials with enhanced properties. These include improvements in catalytic activity, changes in optical behavior and potential gains in electronic properties. However, these are only attained through precise synthetic control of the resulting material with respect to structure, organization, size, and composition. Fortunately, biological systems are exceptional at the synthesis and assembly of diverse inorganic materials at many different length scales; and as result, has inspired many different approaches toward the biomimetic synthesis of hybrid inorganic materials.


Synthesis and Applications of Inorganic Nanostructures

Synthesis and Applications of Inorganic Nanostructures
Author: Huaqiang Cao
Publisher: John Wiley & Sons
Total Pages: 558
Release: 2017-12-26
Genre: Science
ISBN: 3527340270

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Authored by a leading figure in the field, this book systematically describes all the fundamental aspects and applications of inorganic nanostructures from zero to three dimensions. It not only discusses various synthesis technologies, but also covers the physical properties of inorganic nanostructures, such as optical, electric and magnetic properties, and practical applications such as energy storage (including Li-ion and Ni-MH batteries and supercapacitors), superhydrophobic and bio-applications, etc. The focus throughout is on the synthesis-structure-application relationships, including the growth mechanisms for the nanostrucutres. Concise yet comprehensive, this is indispensable reading for chemists and materials scientists.


Bio-inorganic Hybrid Nanomaterials

Bio-inorganic Hybrid Nanomaterials
Author: Eduardo Ruiz-Hitzky
Publisher: John Wiley & Sons
Total Pages: 521
Release: 2008-06-25
Genre: Science
ISBN: 3527621458

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This ready reference is the first to collate the interdisciplinary knowledge from materials science, bioengineering and nanotechnology to give an in-depth overview of the topic. As such, it provides broad coverage of combinations between inorganic materials and such key biological structures as proteins, enzymes, DNA, or biopolymers. With its treatment of various application directions, including bioelectronic interfacing, tissue repair, porous membranes, sensors, nanocontainers, and DNA engineering, this is essential reading for materials engineers, medical researchers, catalytic chemists, biologists, and those working in the biotechnological and semiconductor industries.


Biological Synthesis of Inorganic Nanoparticles and Their Applications

Biological Synthesis of Inorganic Nanoparticles and Their Applications
Author: R. Indira Iyer
Publisher: Scientific Publishers
Total Pages: 447
Release: 2024-04-20
Genre: Science
ISBN: 8196247192

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Nanoparticles have immense commercial importance. Biogenic synthesis of nanoparticle from diverse groups of organisms is of great interest since the methodology is simple and hazard-free. The obtained nanoparticles are free from toxic residues and are bio-compatible. The book offers an overview of various aspects of biological synthesis of the inorganic nanoparticles-gold, silver, platinum, palladium, copper oxide, titanium dioxide nanoparticles, and carbon nanostructures by different biological systems and their suitability for application in various fields especially in biomedicine and environmental protection. The diversity of biomolecules in these bioresources can facilitate biomanufacturing of nanoparticles of suitable size and geometry by regulating reaction parameters. The book also offers an insight into the use of callus cultures which are renewable bio-resources for the axenic synthesis of nanoparticles suitable for therapeutic applications. In several studies the biogenic nanoparticles have been found to be superior to nanoparticles synthesized by conventional methods. Hence studies on the current status of biogenic synthesis of nanoparticles and their applications will facilitate future research to achieve biomanufacturing of nanoparticles for various beneficial uses. It is suitable as a reference book for researchers. It is useful as a textbook for post-graduate and undergraduate students. Each chapter has several questions to stimulate the interest of students. There are also simple laboratory protocols for biogenic synthesis.


Nanostructures: Synthesis, Functional Properties and Application

Nanostructures: Synthesis, Functional Properties and Application
Author: Thomas Tsakalakos
Publisher: Springer Science & Business Media
Total Pages: 694
Release: 2012-12-06
Genre: Technology & Engineering
ISBN: 9400710194

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The Advanced Study Institute on Synthesis, Functional Properties and Applications of Nanostructures, held at the Knossos Royal Village, Heraklion, Crete, Greece, July 26, 2002 - August 4, 2002, successfully reviewed the state-of-the-art of nanostructures and nanotechnology. It was concluded that Nanotechnology is widely agreed to be the research focus that will lead to the next generation of breakthroughs in science and engineering. There are three cornerstones to the expectation that Nanotechnology will yield revolutionary advances in understanding and application: • Breakthroughs in properties that arise from materials fabricated from the nanoscale. • Synergistic behavior that arise from the combination of disparate types of materials (soft vs. hard, organic vs. inorganic, chemical vs. biological vs. solid state) at the nanoscale. • Exploitation of natural (e.g. chemical and biological) assembly mechanisms that can accomplish structural control at the nanoscale. It is expected that this will lead to paradigms for assembling bio-inspired functional systems that accomplish desirable properties that are either unavailable or prohibitively expensive using top-down approaches.


Design of Nanostructures

Design of Nanostructures
Author: Himadri B. Bohidar
Publisher: John Wiley & Sons
Total Pages: 348
Release: 2017-10-23
Genre: Technology & Engineering
ISBN: 3527343334

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Adopting a unique approach, this book provides a thorough, one-stop introduction to nanoscience and self-assembly of nanomaterials composed of such materials as metals, metal oxides, metal sulphides, polymers, and biopolymers. Clearly divided into three sections covering the main aspects of nanoscience, the first part deals with the basic principles of nanoscale science. Alongside essential approaches and forces, this section also covers thermodynamics, phase transitions, and applications to biological systems. The second and third parts then go on to provide a detailed description of the synthesis of inorganic and organic nanoparticles, respectively. With its interdisciplinary content of importance to many different branches of nanoscience, this is essential reading for material scientists, physicists, biophysical chemists, chemical engineers, and biotechnologists alike.


Bionanotechnology

Bionanotechnology
Author: Bernd Rehm
Publisher: Caister Academic Press Limited
Total Pages: 0
Release: 2013
Genre: Science
ISBN: 9781908230164

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The emerging science of bionanotechnology refers to the harnessing of the vast diversity of self-assembling building blocks and processes for the assembly of nano-scaled structures for the manufacture of highly functional nanomaterials. Bionanotechnology is an interdisciplinary field combining biological principles with physical and chemical procedures to generate nano-sized building blocks and materials with specific functions and new properties. It involves the development of biologically-based procedures, the use of biological components and systems, the design of biocompatible objects and systems and the use of nanotechnology to support biotechnological processes. Under the expert guidance of Bernd H. A. Rehm, the authors of this book provide a survey of the most striking and successful approaches for the production of biogenic nanodevices considering not only living organisms as manufacturer but also in vitro processes that utilize the self-assembly of isolated biomolecules. The book provides a topical overview of the vast field of bionanotechnology by describing various biological nanostructures, the implied design space and the enormous potential for applications in medicine and technology. Two chapters describe the microbial production of tailor-made self-assembled nanostructures which can be processed into functional nanoparticles. Other chapters comprehensively summarize recent developments in the use of protein-based assemblies for nanodevice and nanomaterials production. Topics include: polymer synthesis, self-assembly and display technology, self-assembly and application of cellulosomal components, protein-aided mineralization of inorganic nanostructures, amyloid fibrils as bionanomaterials, self-assembly and applications of bacteriophages and virus-like particles, plant oil bodies and oleosins-structure function and biotechnological applications, visual restoration using microbial rhodopsins, magnetosomes and liposome-nanoparticle assemblies. This is a recommended book for anyone interested in the fields of nanotechnology, biotechnology, metabolic engineering, molecular biology, genetic engineering and protein design.


Inorganic Nanoprobes for Biological Sensing and Imaging

Inorganic Nanoprobes for Biological Sensing and Imaging
Author: Hedi Mattoussi
Publisher: Artech House
Total Pages: 332
Release: 2009
Genre: Technology & Engineering
ISBN: 1596931973

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This groundbreaking resource offers you an up-to-date account of the pioneering activity pushing new boundaries in the emerging area of inorganic nanoprobes and their use in biology and medicine. Written and edited by leading experts in the field, this unique book places particular emphasis nanoprobes made of luminescent semiconductor nanocrystals (quantum dots or QDs) and magnetic nanoparticles (MNPs). You find an insightful discussion on the synthesis, characterization, and analysis of the unique properties of luminescent QDs and MNPs.


Biological and Bio-inspired Nanomaterials

Biological and Bio-inspired Nanomaterials
Author: Sarah Perrett
Publisher: Springer Nature
Total Pages: 440
Release: 2019-11-11
Genre: Medical
ISBN: 9811397910

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This book summarizes naturally occurring and designed bio-inspired molecular building blocks assembled into nanoscale structures. It covers a fascinating array of biomimetic and bioinspired materials, including inorganic nanozymes, structures formed by DNA origami, a wide range of peptide and protein-based nanomaterials, as well as their applications in diagnostics and therapeutics. The book elucidates the mechanism of assembly of these materials and characterisation of their mechanical and physico-chemical properties which inspires readers not only to exploit the potential applications of nanomaterials, but also to understand their potential risks and benefits. It will be of interest to a broad audience of students and researchers spanning the disciplines of biology, chemistry, engineering, materials science, and physics.