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Nucleic Acids and Smart Materials: Advanced Building Blocks for Logic Systems

Journal

ADVANCED MATERIALS
Volume 26, Issue 33, Pages 5742-5757

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/adma.201401617

Keywords

nucleic acids; functional materials; logic gates; nanotechnology; smart devices

Funding

  1. National Basic Research Program of China [2012CB720602, 2011CB936004]
  2. National Natural Science Foundation of China [91213302, 21210002, 21303182]

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Logic gates can convert input signals into a defined output signal, which is the fundamental basis of computing. Inspired by molecular switching from one state to another under an external stimulus, molecular logic gates are explored extensively and recognized as an alternative to traditional silicon-based computing. Among various building blocks of molecular logic gates, nucleic acid attracts special attention owing to its specific recognition abilities and structural features. Functional materials with unique physical and chemical properties offer significant advantages and are used in many fields. The integration of nucleic acids and functional materials is expected to bring about several new phenomena. In this Progress Report, recent progress in the construction of logic gates by combining the properties of a range of smart materials with nucleic acids is introduced. According to the structural characteristics and composition, functional materials are categorized into three classes: polymers, noble-metal nanomaterials, and inorganic nanomaterials. Furthermore, the unsolved problems and future challenges in the construction of logic gates are discussed. It is hoped that broader interests in introducing new smart materials into the field are inspired and tangible applications for these constructs are found.

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