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- W2504510080 endingPage "660" @default.
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- W2504510080 abstract "Molecules are the smallest entities that can have some function.Therefore, the smallest possible devices may consist of molecules,in which each individual molecule works as a functional unit[1, 2]. Molecules must be organized into well-defined architecturesby means of directional intermolecular interactions, that is, non-covalent bonds, for cooperative performance [3]. Communicationamong functional units, i.e., molecules, may be achieved on the basisof electron-and energy-transfer processes. Therefore, properties ofintermolecular bonds should be clarified as conduits for electroniccommunication. Further, switching functions for these processesmust be installed as mechanisms for logic operation [4]. Switch-ing may be effected by external stimuli, such as photons, electrons,protons, etc. Porphyrins are very attractive building blocks for suchmolecule-based devices due to its excellent electronic and photonicproperties and their amenability to synthetic modification to affordwell-defined elaborate structures [5-7]." @default.
- W2504510080 created "2016-08-23" @default.
- W2504510080 creator A5091263771 @default.
- W2504510080 date "2012-01-12" @default.
- W2504510080 modified "2023-10-14" @default.
- W2504510080 title "Porphyrin Nanoclusters for Sensoring Chemical and Physical Stimuli" @default.
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- W2504510080 doi "https://doi.org/10.1201/b11621-14" @default.
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