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Titlebook: Biological Magnetic Materials and Applications; Tadashi Matsunaga,Tsuyoshi Tanaka,David Kisailus Book 2018 Springer Nature Singapore Pte L

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發(fā)表于 2025-3-21 17:01:07 | 只看該作者 |倒序瀏覽 |閱讀模式
期刊全稱Biological Magnetic Materials and Applications
影響因子2023Tadashi Matsunaga,Tsuyoshi Tanaka,David Kisailus
視頻videohttp://file.papertrans.cn/188/187380/187380.mp4
發(fā)行地址Provides a natural perspective on synthesis of engineered materials.Pursues a cradle-to-grave approach, from biological processing to application.Offers unique insights into processing next-generation
圖書封面Titlebook: Biological Magnetic Materials and Applications;  Tadashi Matsunaga,Tsuyoshi Tanaka,David Kisailus Book 2018 Springer Nature Singapore Pte L
影響因子.This book addresses the biologically controlled synthesis of magnetic materials, and its applications in bio-inspired design and synthesis. It highlights several key aspects of biologically produced magnetic materials – (i) organisms that biologically synthesize and utilize magnetic materials; (ii) formation mechanisms; (iii) how these biological formation routes yield various phases and morphologies; and (iv) the resultant magnetic and structural properties – and describes diverse bio-inspired approaches to utilizing magnetic materials in applications ranging from semiconductor to health industries..In addition, the book discusses the recent industrial use of magnetic materials to develop scalable technologies that encompass protein displays, drug-delivery, biophysical separations, and medical diagnostics, as well as outlining future next-generation applications. As such, it offers valuable insights for all scientists interested in using multidisciplinary fields to overcome current obstacles, and in gaining multifaceted expertise in magnetic materials bionanotechnology..
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書目名稱Biological Magnetic Materials and Applications影響因子(影響力)




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Bioengineering and Biotechnological Applications of Bacterial Magnetic Particlese surrounded by a lipid bilayer membrane containing a number of proteins, referred to as magnetosome. Since the bioengineering methodology for magnetotactic bacteria was established, expression of a wide range of functional proteins onto magnetic particles has successfully been performed in which th
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Protein and Peptide-Mediated Synthesis of Magnetic Nanoparticles and Arrays for Biomedicine and Futulevel of precision under ambient conditions and in aqueous solutions, by using specific biomineralisation proteins to produce highly monodisperse magnetic nanoparticles within the magnetosome organelles of magnetotactic bacteria. This chapter explores the use of such proteins outside the magnetosome
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Biopolymer-Directed Magnetic Compositeselements in each model biomineral, which are responsible for these properties, are combined into one new bioinspired material? Drawing inspiration from the natural biominerals nacre, chiton teeth, and bacterial magnetosomes, a model material, containing a magnetite-gelatin composite, filling a layer
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Tadashi Matsunaga,Tsuyoshi Tanaka,David KisailusProvides a natural perspective on synthesis of engineered materials.Pursues a cradle-to-grave approach, from biological processing to application.Offers unique insights into processing next-generation
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