2020
DOI: 10.1002/adfm.202007445
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Design Criteria for Horseshoe and Spiral‐Based Interconnects for Highly Stretchable Electronic Devices

Abstract: Stretchable electronics can be used for numerous advanced applications such as soft and wearable actuators, sensors, bio‐implantable devices, and surgical tools because of their ability to conform to curvilinear surfaces, including human skin. The efficacy of these devices depends on the development of stretchable geometries such as interconnection‐based configurations and the associated mechanics that helps to achieve optimum configurations. This work presents the essential mechanics of silicon (Si) island‐in… Show more

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Cited by 16 publications
(18 citation statements)
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“…Previously, rigid islands and various serpentine electrodes have been used to integrate conventional rigid components into stretchable electronics ( 10 , 11 , 23 ). Serpentine electrodes are vulnerable to repetitive deformation because of weak interface with the polymer matrix and due to its intrinsic brittleness.…”
Section: Resultsmentioning
confidence: 99%
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“…Previously, rigid islands and various serpentine electrodes have been used to integrate conventional rigid components into stretchable electronics ( 10 , 11 , 23 ). Serpentine electrodes are vulnerable to repetitive deformation because of weak interface with the polymer matrix and due to its intrinsic brittleness.…”
Section: Resultsmentioning
confidence: 99%
“…Until now, the shapes of rigid islands have been determined according to the specific applications (table S1). In the case of stretchable display or sensor array, since the device arrangement is a square packing, the square-shaped islands (9,10,14,(20)(21)(22)(23)(24)(25) have been mainly used. On the other hand, in the stretchable battery, hexagon- (23,26,27) or circle-shaped islands (CIs) (11,(28)(29)(30) have been used to increase the density of the unit cell.…”
Section: Fabrication and Characterization Of Fwi Embedded In Ecoflex ...mentioning
confidence: 99%
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“…It is well-known that Si experiences mechanical failure as long as its principal strain (ε p ) exceeds 1%. 36,[46][47][48] During its functioning, stress concentration in the SS-interconnect may result in ε p higher than 1%, defining the fracture state or conditions in this work.…”
Section: A Design Parameters Of Ss-interconnectsmentioning
confidence: 99%
“…
requirements should be met in stretchable circuit boards; patternability, high conductivity, and electrical invariance under large deformation in any direction.Direct metal deposition was successfully used to obtain non-transparent stretchable circuit lines through the structural approaches such as the wrinkle formation and the horse-shoe shape. [29][30][31][32] The prestrain approach is limited in pattern resolution and difficult produce the circuit line patterns in desired shapes at target positions because the metal pattern is deformed unevenly. In addition, the out-of-plane buckling makes it difficult to incorporate additional layers or devices on the circuit lines.
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mentioning
confidence: 99%