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Scissoring/nonbuckling interconnects are proposed as a different route to stretchable structures, in which thick bar geometries replace thin ribbon layouts, to yield scissor‐like/nonbuckling deformations instead of in or out of plane buckling, as discussed in article number 1604989 by Shuodao Wang, John A. Rogers, and co‐authors. Metal and silicon structures with scissoring design can be stretched...
Scissoring in thick bars suppresses buckling behavior in serpentine traces that have thicknesses greater than their widths, as detailed in a systematic set of analytical and experimental studies. Scissoring in thick copper traces enables elastic stretchability as large as ≈350%, corresponding to a sixfold improvement over previously reported values for thin geometries (≈60%).
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