Communicating Chemical Congregation: A Molecular AND Logic Gate with Three Chemical Inputs as a "Lab-on-a-Molecule" Prototype.

The article describes a molecular and logic gate driven by three chemical inputs as a direct way of detecting congregations of chemical species. The logic gate was constructed based on the design principles of modular photoinduced electron transfer systems. Boolean logic processing of concentration...

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Publicado en:Journal of the American Chemical Society Vol. 128; no. 15; pp. 4950 - 4952
Autores principales: Magri, David C., Brown, Gareth J., McClean, Gareth D., De Siiva, A. Prasanna
Formato: Artículo
Publicado: American Chemical Society 4/19/2006
Materias:
Acceso en línea:Ver este registro en EBSCOhost
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        atl: Communicating Chemical Congregation: A Molecular AND Logic Gate with Three Chemical Inputs as a "Lab-on-a-Molecule" Prototype.
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          Magri, David C.
          Brown, Gareth J.
          McClean, Gareth D.
          De Siiva, A. Prasanna
        affil: School of Chemistry and Chemical Engineering, Queen's University, Belfast BT9 5AG, Northern Ireland
      su:
        Fluorescence
        Logic programming
        Charge exchange
        Imaging systems
        Optoelectronic devices
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        subj:
          Fluorescence
          Logic programming
          Charge exchange
          Imaging systems
          Optoelectronic devices
      ab: The article describes a molecular and logic gate driven by three chemical inputs as a direct way of detecting congregations of chemical species. The logic gate was constructed based on the design principles of modular photoinduced electron transfer systems. Boolean logic processing of concentration information by a molecular device can be used to screen medical conditions.
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      src: R
    language: English
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