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Ag flake/silicone rubber composite with high stability and stretching speed insensitive resistance via conductive bridge formation
In Seon Yoon
, Sun Hong Kim
, Youngsu Oh
,
Byeong Kwon Ju
*
, Jae Min Hong
*
Corresponding author for this work
Research output
:
Contribution to journal
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Article
›
peer-review
22
Citations (Scopus)
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Keyphrases
High Stability
100%
Silicone Composites
100%
Bridge Formation
100%
Ag Flakes
100%
Conductive Bridge
100%
Stretching Speed
100%
Electrical Conductivity
50%
High Stretchability
50%
Fabrication Methods
25%
Stretchable
25%
Surface Crack
25%
Resistance Value
25%
Highly Stable
25%
Stable Resistance
25%
Wearable Devices
25%
Surface Damage
25%
Viscoelastic Properties
25%
Stress Relaxation
25%
Viscoelastic Polymer Matrix
25%
Material Science
Electrical Conductivity
100%
Polysiloxane
100%
Conductor
50%
Polymer Matrix
50%
Surface Crack
50%
Stress Relaxation
50%
Surface Damage
50%
Engineering
Conductive
100%
Rubber Composite
100%
Electrical Conductivity
50%
Realization
25%
Surface Crack
25%
Polymer Matrix
25%
Wearable Sensor
25%
Stress Relaxation
25%
Damage Surface
25%