Nanoconfinement controls stiffness, strength and mechanical toughness of beta-sheet crystals in silk.

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Nanoconfinement controls stiffness, strength and mechanical toughness of beta-sheet crystals in silk. is …
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scholarly articleQ13442814

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P6179Dimensions Publication ID1040770592
P356DOI10.1038/NMAT2704
P698PubMed publication ID20228820
P5875ResearchGate publication ID41944339

P50authorMarkus J. BuehlerQ6771460
P2093author name stringSinan Keten
Zhiping Xu
Britni Ihle
P2860cites workThe molecular structure of spider dragline silk: folding and orientation of the protein backboneQ24533467
Assembly mechanism of recombinant spider silk proteins.Q24645472
Generalized Gradient Approximation Made SimpleQ25938998
All-atom empirical potential for molecular modeling and dynamics studies of proteinsQ27860468
Deformation and failure of protein materials in physiologically extreme conditions and diseaseQ28235746
The myosin coiled-coil is a truly elastic protein structure.Q30332572
Mechanical unfolding intermediates in titin modules.Q31431985
Design of superior spider silk: from nanostructure to mechanical propertiesQ33256241
Greatly increased toughness of infiltrated spider silkQ33434293
Liquid crystalline spinning of spider silkQ33940679
Segmented nanofibers of spider dragline silk: atomic force microscopy and single-molecule force spectroscopyQ34138266
Surprising strength of silkworm silkQ34144749
Materials become insensitive to flaws at nanoscale: lessons from natureQ34195073
Pulling geometry defines the mechanical resistance of a beta-sheet proteinQ34223296
Role of intermolecular forces in defining material properties of protein nanofibrilsQ34728278
Thermal fluctuations of grafted microtubules provide evidence of a length-dependent persistence lengthQ34771999
Silk as a BiomaterialQ34988084
Protein secondary structure and orientation in silk as revealed by Raman spectromicroscopyQ35696604
Single-molecule experiments in vitro and in silicoQ36831515
Geometric confinement governs the rupture strength of H-bond assemblies at a critical length scaleQ39274826
Methodological advances in molecular dynamics simulations of biological systemsQ40467199
Mechanical response of silk crystalline units from force-distribution analysisQ41826792
Study of protein conformation and orientation in silkworm and spider silk fibers using Raman microspectroscopyQ42043217
Analyis of structure/property relationships in silkworm (Bombyx mori) and spider dragline (Nephila edulis) silks using Raman spectroscopyQ42048739
Non-periodic lattice crystals in the hierarchical microstructure of spider (major ampullate) silkQ42062281
Sacrificial ionic bonds need to be randomly distributed to provide shear deformabilityQ42264982
Hypotheses that correlate the sequence, structure, and mechanical properties of spider silk proteinsQ42602361
Molecular dynamics simulations of the unfolding of beta(2)-microglobulin and its variantsQ44580868
Molecular nanosprings in spider capture-silk threadsQ46064844
Modeling of mechanical properties and structural design of spider web.Q47634532
Strength limit of entropic elasticity in beta-sheet protein domains.Q51788913
Conformational energy studies of β-sheets of model silk fibroin peptides. I. Sheets of poly(Ala-Gly) chainsQ52438832
Mechanical properties of silk: interplay of deformation on macroscopic and molecular length scales.Q52689579
Cell-wall recovery after irreversible deformation of wood.Q53708658
Nature’s hierarchical materialsQ55981149
Molecular Modeling of Spider Silk ElasticityQ56113331
The SIESTA method for ab initio order-N materials simulationQ56866700
Mechanical Strength of the Titin Z1Z2-Telethonin ComplexQ57801230
Reversible unfolding of individual titin immunoglobulin domains by AFMQ73334897
Actin-binding proteins sensitively mediate F-actin bundle stiffnessQ80143400
Asymptotic strength limit of hydrogen-bond assemblies in proteins at vanishing pulling ratesQ81381138
The role of kinetics of and amide bonding in protein stabilityQ99245407
NAMD: a Parallel, Object-Oriented Molecular Dynamics ProgramQ114799820
P433issue4
P407language of work or nameEnglishQ1860
P304page(s)359-367
P577publication date2010-03-14
P1433published inNature MaterialsQ1998645
P1476titleNanoconfinement controls stiffness, strength and mechanical toughness of beta-sheet crystals in silk
P478volume9

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