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Nacre-mimetics with synthetic nanoclays up to ultrahigh aspect ratios
Paramita Das
, Jani-Markus Malho
, Khosrow Rahimi
, Felix H. Schacher
, Baochun Wang
, Dan Eugen Demco
, Andreas Walther
VTT Technical Research Centre of Finland
Leibniz Institute for Interactive Materials (DWI), Aachen
Friedrich Schiller University Jena
VTT (former employee or external)
Research output
:
Contribution to journal
›
Article
›
Scientific
›
peer-review
315
Citations (Scopus)
Overview
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Keyphrases
Nanoclay
100%
Nacre-mimetic
100%
Ultra-high Aspect Ratio
100%
Mechanical Properties
40%
Aspect Ratio
40%
Nanoplatelets
40%
Stiffness
20%
Nanostructures
20%
High Performance
20%
Low Aspect Ratio
20%
Functional Properties
20%
Rational Design
20%
Mechanistic Properties
20%
Deformation Mechanism
20%
Structure Formation
20%
Viscoelastic Properties
20%
High-performance Materials
20%
Three-order
20%
Barrier Materials
20%
Functional Materials
20%
Eco-friendly
20%
Cross-linked Materials
20%
High Toughness
20%
Self-assembled Polymer
20%
Inelastic Deformation
20%
Natural Nanoclay
20%
Highly Crosslinked
20%
Glass-like
20%
Gas Barrier
20%
Nacre-mimetic Materials
20%
Soft Phase
20%
Highly Ordered
20%
INIS
aspect ratio
100%
performance
50%
deformation
50%
barriers
50%
nanostructures
50%
design
25%
polymers
25%
stiffness
25%
mechanical properties
25%
cross-linking
25%
gases
25%
coverings
25%
transparency
25%
tuning
25%
glass
25%
hydration
25%
Material Science
Nanoclay
100%
Nacre
100%
Deformation Mechanism
16%
Functional Material
16%