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Titlebook: Extreme Biomimetics; Hermann Ehrlich Book 2017 Springer International Publishing AG 2017 Biocomposites.Bioelectrometallurgy Chitin.Biomate

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书目名称Extreme Biomimetics
编辑Hermann Ehrlich
视频video
概述Details the basic principles of extreme biomimetics approach for design of new materials and applications.Includes numerous examples of the hierarchical organization of hydrothermally or psychrophilic
图书封面Titlebook: Extreme Biomimetics;  Hermann Ehrlich Book 2017 Springer International Publishing AG 2017 Biocomposites.Bioelectrometallurgy Chitin.Biomate
描述.This book discusses the current direction of the research approach to extreme biomimetics through biological materials-inspired chemistry and its applications in modern technology and medicine. It  is a resource covering topics of extreme (psychrophilic and thermopilic) biomineralization, solvothermal and hydrothermal chemistry of metal oxides and nanostructured composites, and bioinspired materials science in a diverse areas. The authors review the current advances in the extreme biomimetics research field and describe various approaches introduced and explored by their respective laboratories..• Details the basic principles of extreme biomimetics approach for design of new materials and applications;.• Includes numerous examples of the hierarchical organization of hydrothermally or psychrophilically obtained biocomposites, structural bioscaffolds, biosculpturing, biomimetism, and bioinspiration as tools for the design of innovative materials;.• Describes and details the principles of extreme biomimetics with respect to metallization of chemically and thermally stable biopolymers..
出版日期Book 2017
关键词Biocomposites; Bioelectrometallurgy Chitin; Biomaterials; Biomimetics; Biomineralization; Biopolymer; Bios
版次1
doihttps://doi.org/10.1007/978-3-319-45340-8
isbn_softcover978-3-319-83271-5
isbn_ebook978-3-319-45340-8
copyrightSpringer International Publishing AG 2017
The information of publication is updating

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Hydrothermal Synthesis of Advanced Chitin-Based Materials,ation of bioinspired materials. The unique chemical and thermal stability as well functionality of chitin have opened the gate for the development of extreme biomimetics routes for the creation of nanostructured biocomposites utilizing chitinous templates in various hydrothermal syntheses in vitro.
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Hydrothermal Synthesis of Spongin-Based Materials, and enzymatically resistant three-dimensional network of biocompatible fibers has been widely used since ancient Greece but nowadays it gains a renewed attention due to unique architectural, anastomosed design potentially attractive in the field of tissue engineering. In this chapter, the structura
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