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A time-temperature integrator based on fluorescent and polymorphic compounds.


ABSTRACT: Despite the variety of functional properties of molecular materials, which make them of interest for a number of technologies, their tendency to form inhomogeneous aggregates in thin films and to self-organize in polymorphs are considered drawbacks for practical applications. Here, we report on the use of polymorphic molecular fluorescent thin films as time temperature integrators, a class of devices that monitor the thermal history of a product. The device is fabricated by patterning the fluorescent model compound thieno(bis)imide-oligothiophene. The fluorescence colour of the pattern changes as a consequence of an irreversible phase variation driven by temperature, and reveals the temperature at which the pattern was exposed. The experimental results are quantitatively analysed in the range 20-200°C and interpreted considering a polymorph recrystallization in the thin film. Noteworthy, the reported method is of general validity and can be extended to every compound featuring irreversible temperature-dependent change of fluorescence.

SUBMITTER: Gentili D 

PROVIDER: S-EPMC3761231 | biostudies-literature | 2013

REPOSITORIES: biostudies-literature

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A time-temperature integrator based on fluorescent and polymorphic compounds.

Gentili Denis D   Durso Margherita M   Bettini Cristian C   Manet Ilse I   Gazzano Massimo M   Capelli Raffaella R   Muccini Michele M   Melucci Manuela M   Cavallini Massimiliano M  

Scientific reports 20130101


Despite the variety of functional properties of molecular materials, which make them of interest for a number of technologies, their tendency to form inhomogeneous aggregates in thin films and to self-organize in polymorphs are considered drawbacks for practical applications. Here, we report on the use of polymorphic molecular fluorescent thin films as time temperature integrators, a class of devices that monitor the thermal history of a product. The device is fabricated by patterning the fluore  ...[more]

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