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      A stretchable form of single-crystal silicon for high-performance electronics on rubber substrates.

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          Abstract

          We have produced a stretchable form of silicon that consists of submicrometer single-crystal elements structured into shapes with microscale, periodic, wavelike geometries. When supported by an elastomeric substrate, this "wavy" silicon can be reversibly stretched and compressed to large levels of strain without damaging the silicon. The amplitudes and periods of the waves change to accommodate these deformations, thereby avoiding substantial strains in the silicon itself. Dielectrics, patterns of dopants, electrodes, and other elements directly integrated with the silicon yield fully formed, high-performance "wavy" metal oxide semiconductor field-effect transistors, p-n diodes, and other devices for electronic circuits that can be stretched or compressed to similarly large levels of strain.

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          Author and article information

          Journal
          Science
          Science (New York, N.Y.)
          American Association for the Advancement of Science (AAAS)
          1095-9203
          0036-8075
          Jan 13 2006
          : 311
          : 5758
          Affiliations
          [1 ] Department of Materials Science and Engineering.
          Article
          1121401
          10.1126/science.1121401
          16357225
          109a5a37-4bef-4cc1-a15d-ac984638620e
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