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Titlebook: Biological Adhesives; Andrew M. Smith Book 2016Latest edition Springer International Publishing Switzerland 2016 Adhesion.Bioadhesive.Bioe

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發(fā)表于 2025-3-21 16:21:35 | 只看該作者 |倒序?yàn)g覽 |閱讀模式
期刊全稱Biological Adhesives
影響因子2023Andrew M. Smith
視頻videohttp://file.papertrans.cn/188/187295/187295.mp4
發(fā)行地址A fully revised and expanded new edition.Now also covers adhesives from mussels, spiders and ivy.Of great interest for applications in medicine, dentistry, and biotechnology
圖書(shū)封面Titlebook: Biological Adhesives;  Andrew M. Smith Book 2016Latest edition Springer International Publishing Switzerland 2016 Adhesion.Bioadhesive.Bioe
影響因子.This book reviews the structure of different biological adhesives and the mechanisms by which they achieve interfacial adhesion, cohesive strength, and fracture toughness. These adhesives include cements, strongly adherent fibrous holdfasts, tough and flexible adhesive gels, energy-dissipating adhesive tapes, nanoparticle-based adhesives, hierarchically structured nanoarray adhesives and a wide variety of viscous, sticky secretions.. Biological adhesives are complex biomaterials that have evolved to meet a wide variety of functional demands, and which range from the micro- to the macro-scale. Some adhesives set rapidly, while others set over longer periods of time; others can readily detach and reattach to allow movement and to manipulate objects, while yet others have the ability to self-heal after sustaining damage.. Recent technological advances have expanded our ability to characterize these materials.? Analyzing the physical and molecular structure, processing, chemical interactions and mechanical properties of these adhesives has yielded novel insights, which this new edition discusses in detail. These insights are likely to inform and guide the biomimetic development of new
Pindex Book 2016Latest edition
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書(shū)目名稱Biological Adhesives影響因子(影響力)




書(shū)目名稱Biological Adhesives影響因子(影響力)學(xué)科排名




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Diatom Adhesives: Molecular and Mechanical Properties,cal properties of these adhesives, allowing sub-molecular structures to be identified that have allowed new insights into their role in enhancing diatom adhesion to surfaces even in high-energy aquatic environments. Finally we look at how new technological advances, such as the recent sequencing of
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Progress in the Study of Adhesion by Marine Invertebrate Larvae,st in the isolation and analysis of tiny quantities of larval adhesives, which have largely precluded these approaches. Further challenges relate to the in situ detection of larval adhesive materials, being usually secreted underwater and buried at the interface between a solid substrate and the org
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Interfacial Phenomena in Marine and Freshwater Mussel Adhesion,ew insights regarding redox chemistry at the adhesive interface, the effect of surface chemistry on adhesion, and the role of amino acids other than Dopa in adhesion. Prior to this, adhesion of freshwater mussels will be reviewed. Here, the state of knowledge is much more nascent, with current empha
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