Issue 35, 2013

An analytical mechanics model for the island-bridge structure of stretchable electronics

Abstract

In stretchable electronics, the island-bridge structure on a soft substrate plays an important role in achieving large stretchability. A key issue in developing such a system is to prevent the island-bridge structure from breaking during use because it is composed of brittle semiconductor materials (e.g., silicon) which withstand very small strains (∼1%). In the following, an analytical mechanics model of the island-bridge structure is established and the accurate solution is obtained. A validated scaling law is found to reveal the dependence of the normalized maximum strain in the island on the prestrain of the substrate, which controls the mechanical failure of the island-bridge structure and provides a theoretical basis for fracture-safe design of stretchable electronics.

Graphical abstract: An analytical mechanics model for the island-bridge structure of stretchable electronics

Article information

Article type
Paper
Submitted
26 May 2013
Accepted
05 Jul 2013
First published
08 Jul 2013

Soft Matter, 2013,9, 8476-8482

An analytical mechanics model for the island-bridge structure of stretchable electronics

R. Li, M. Li, Y. Su, J. Song and X. Ni, Soft Matter, 2013, 9, 8476 DOI: 10.1039/C3SM51476E

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