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Titlebook: Biological and Bio-inspired Nanomaterials; Properties and Assem Sarah Perrett,Alexander K. Buell,Tuomas P.J. Knowl Book 2019 Springer Natur

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https://doi.org/10.1007/978-981-13-9791-2Amyloid fibrils; Assembly/self-assembly; Bio-inspired Nanomaterials and Nanostructures; Nanomedicine an
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Biological and Bio-inspired Nanomaterials978-981-13-9791-2Series ISSN 0065-2598 Series E-ISSN 2214-8019
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Peptide Self-Assembly and Its Modulation: Imaging on the Nanoscale,py. The effects on assembly propensity due to mutations and modifications in peptide sequences, small organic molecules and conformational transitions of peptides are identified. The obtained structural insights into the sequence-dependent assembly propensity could inspire rational design of peptide architectures at the molecular level.
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Sarah Perrett,Alexander K. Buell,Tuomas P.J. KnowlCovers a fascinating array of biomimetic and bioinspired nanomaterials.Elucidates the mechanism of assembly of nanomaterials and characterisation of their mechanical and physico-chemical properties.It
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Peptide Self-Assembly and Its Modulation: Imaging on the Nanoscale,py. The effects on assembly propensity due to mutations and modifications in peptide sequences, small organic molecules and conformational transitions of peptides are identified. The obtained structural insights into the sequence-dependent assembly propensity could inspire rational design of peptide
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The Kinetics, Thermodynamics and Mechanisms of Short Aromatic Peptide Self-Assembly,spheres, plates) is a promising route toward the creation of bio-compatible materials with often unexpected and useful properties. Furthermore, such simple self-assembling systems have been proposed as model systems for the self-assembly of longer peptides, a process that can be linked to biological
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