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Volumn 133, Issue 6, 2011, Pages 1745-1747
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Nanomechanical stimulus accelerates and directs the self-assembly of silk-elastin-like nanofibers
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Author keywords
[No Author keywords available]
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Indexed keywords
BOTTOM UP APPROACH;
BUILDING BLOCKES;
CONFORMATIONAL CHANGE;
DIRECTIONAL CONTROL;
ENVIRONMENTAL STIMULI;
FIBER ASSEMBLIES;
HIERARCHICAL STRUCTURES;
IN-BUILDINGS;
MICA SUBSTRATES;
NANOSCALE ASSEMBLIES;
ONE-DIMENSIONAL NANOSTRUCTURE;
PATTERNED SUBSTRATES;
PROTEIN POLYMERS;
SELF-ASSEMBLE;
SINGLE RESIDUE;
ATOMIC FORCE MICROSCOPY;
GLYCOPROTEINS;
MICA;
SELF ASSEMBLY;
SILICATE MINERALS;
SILK;
SUBSTRATES;
NANOFIBERS;
ELASTIN;
MICA;
NANOFIBER;
NANOMATERIAL;
ARTICLE;
ATOMIC FORCE MICROSCOPY;
CONFORMATIONAL TRANSITION;
ENVIRONMENTAL STRESS;
MECHANICAL STIMULATION;
MOLECULAR MECHANICS;
PROTEIN ASSEMBLY;
PROTEIN POLYMERIZATION;
SILK;
AMINO ACID SEQUENCE;
ANIMALS;
BIOMIMETIC MATERIALS;
ELASTIN;
KINETICS;
MECHANICAL PROCESSES;
MICROSCOPY, ATOMIC FORCE;
MOLECULAR SEQUENCE DATA;
NANOFIBERS;
NANOTECHNOLOGY;
PEPTIDE FRAGMENTS;
SILK;
FIBERS;
MICA;
MICROSCOPY;
PROTEINS;
SILICATES;
SILK;
SUBSTRATES;
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EID: 79951542954
PISSN: 00027863
EISSN: 15205126
Source Type: Journal
DOI: 10.1021/ja110191f Document Type: Article |
Times cited : (36)
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References (20)
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