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Titlebook: NanoBioTechnology; BioInspired Devices Oded Shoseyov,Ilan Levy Book 2008 Humana Press 2008 Biosensor.DNA.Nanotube.Polysaccharid.Polysaccha

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發(fā)表于 2025-3-21 18:50:41 | 只看該作者 |倒序?yàn)g覽 |閱讀模式
書(shū)目名稱(chēng)NanoBioTechnology
副標(biāo)題BioInspired Devices
編輯Oded Shoseyov,Ilan Levy
視頻videohttp://file.papertrans.cn/661/660655/660655.mp4
概述Groundbreaking investigation into the recent advances and future direction of nanobiotechnology.Experimental strategies used by leaders at the cutting-edge of the field.Holds interest for researchers
圖書(shū)封面Titlebook: NanoBioTechnology; BioInspired Devices  Oded Shoseyov,Ilan Levy Book 2008 Humana Press 2008 Biosensor.DNA.Nanotube.Polysaccharid.Polysaccha
描述.NanoBioTechnology: BioInspired Devices and Materials of the Future is a groundbreaking text that will assist scientists and students in learning the fundamentals and cutting-edge nature of this new and emerging science. Focusing on materials and building blocks for nanotechnology, leading scientists from around the world share their knowledge and expertise in this authoritative volume. ..The volume is broken into five sections. The first section presents an overview of nanotechnology and describes the many aspects of the field. Section 2 details biological materials serving as nanotemplates for bottom-up fabrication. Section 3 covers the use of biological macromolecules for electron transfer and computation. Section 4 presents a brief overview of the extensive and rapidly growing field of nanomedicine. Finally, Section 5 details de-novo designed structures and the various approaches different scientific groups take with molecular level training and language. ..Authoritative and comprehensive, NanoBioTechnology: BioInspired Devices and Materials of the Future provides an extraordinary and thorough overview of the emerging field of nanobiotechnology for engineers and physicists, che
出版日期Book 2008
關(guān)鍵詞Biosensor; DNA; Nanotube; Polysaccharid; Polysaccharide; Transport; bionanotechnology; biotechnology; nanote
版次1
doihttps://doi.org/10.1007/978-1-59745-218-2
isbn_softcover978-1-61737-830-0
isbn_ebook978-1-59745-218-2
copyrightHumana Press 2008
The information of publication is updating

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Genetically Engineered S-Layer Proteins and S-Layer-Specific Heteropolysaccharides as Components of der equilibrium conditions into supramolecular structures joined by noncovalent bonds. Although molecular self-assembly is the governing principle in morphogenesis of biological systems, so far only a few molecular species have been exploited for controlled self-assembly into defined nanostructures.
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Photoinduced Electron Transport in DNAwledge, DNA research is still far from a profound and clear understanding of the electronic properties and electronic interactions in DNA that are crucial for any nanobiotechnological application. In the past, DNA-mediated charge transport has been a subject of considerable interest with biological
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Optimizing Photoactive Proteins for Optoelectronic Environments by Using Directed Evolution optimization efforts have advanced in large part as a result of significant advances in the methods and procedures of genetic engineering, most notably, directed evolution. Directed evolution mimics natural selection by combining techniques in genetic modification with differential selection. Most
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Electrical Manipulation of DNA on Metal Surfacesr release of DNA on or into dedicated locations and the control of hybridization. In this context, we discuss techniques for immobilizing DNA on metal surfaces and methods of characterizing such hybrid systems. In particular, we focus on electrically induced, conformational changes of monolayers of
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Nanocomputingis placed on biomolecular devices that use nucleic acids as their substrate. Computational selfassembly of DNA and DNA-based enzymatic computing are surveyed in greater detail. The foremost implementation challenge for computation, namely, DNA word design, is also surveyed.
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