AI Article Synopsis

  • The text discusses the use of polarization charges at the metal-cadmium sulfide interface under strain to manipulate electrical and optoelectronic processes in charge carriers.
  • The piezo-phototronic effect is utilized to convert mechanical and optical stimuli into electronic control signals.
  • Cascade nanowire networks are shown to perform logic functions, binary computations, and information storage through gated D latches using these stimuli.

Article Abstract

Using polarization charges created at the metal-cadmium sulfide interface under strain to gate/modulate electrical transport and optoelectronic processes of charge carriers, the piezo-phototronic effect is applied to process mechanical and optical stimuli into electronic controlling signals. The cascade nanowire networks are demonstrated for achieving logic gates, binary computations, and gated D latches to store information carried by these stimuli.

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Source
http://dx.doi.org/10.1002/adma.201404589DOI Listing

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