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Elastoplastic Deformation of Silk Micro- and Nanostructures
Guoyou Huang
, Limei Tian
, Keng Ku Liu
, Bo Hu
, Feng Xu
, Tian Jian Lu
, Rajesh R. Naik
,
Srikanth Singamaneni
Department of Mechanical Engineering & Materials Science
Roy and Diana Vagelos Division of Biology & Biomedical Sciences (DBBS)
DBBS - Biochemistry, Biophysics, and Structural Biology
Center of Regenerative Medicine
Institute of Clinical and Translational Sciences (ICTS)
Bursky Center for Human Immunology & Immunotherapy Programs (CHiiPs)
Siteman Cancer Center
Research output
:
Contribution to journal
›
Article
›
peer-review
6
Scopus citations
Overview
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Keyphrases
Micro-nano Structure
100%
Silk
100%
Elastoplastic Deformation
100%
Secondary Structure
40%
Local Deformation
40%
Silk Films
40%
Silk Structure
40%
Stretchable Substrate
40%
Organic Solvents
20%
Structure Function
20%
Biodegradation
20%
Biodegradable Electronics
20%
Tissue Engineering
20%
Targeted Drug Delivery
20%
Optical Devices
20%
Mechanical Behavior
20%
Biophotonics
20%
Mechanical Deformation
20%
Mechanical Strength
20%
Local Strain
20%
Electronic Devices
20%
Structure-dependent
20%
Controlled Drug Delivery
20%
Optical Transparency
20%
Nanometre
20%
Silk Materials
20%
Low Surface Roughness
20%
Nanopillars
20%
High Ductility
20%
Micropillar
20%
Engineering
Nanomaterial
100%
Length Scale
50%
Secondary Structure
50%
Silk Film
50%
Biodegradation
25%
Nanometre
25%
Broad Range
25%
Local Strain
25%
Structure Function
25%
Function Relationship
25%
Mechanical Deformation
25%
Targeted Drug Delivery
25%
Nanopillar
25%
Controlled Drug Delivery
25%
Optical Transparency
25%
Tissue Regeneration
25%
Material Science
Nanostructure
100%
Film
50%
Organic Solvents
25%
Biodegradation
25%
Optical Device
25%
Mechanical Deformation
25%
Surface Roughness
25%