Composites of paraffin wax and polydimethylsioxane (PDMS) have previously been demonstrated to exhibit thermally-induced switching between a transparent 'on' state and opaque 'off' state; however, the transmittance of the on state in previously investigated composites was found to decrease with increasing wax content, limiting the achievable off-on contrast. We present a new paraffin-PDMS composite formulation that exhibits essentially no decrease in on-state transparency up to a 10% wax concentration. We furthermore identify the underlying cause of the switching as a microstructural transformation from a homogeneous, transparent state to an inhomogeneous, light-scattering state as a result of the phase transition of the paraffin. We then present a model based on the theory of turbid media that allows for the estimation of the scattering power of a composite of known composition based on easily observed parameters, and suggests ways in which the contrast between the on and off states may be further enhanced.

Improved transparency switching in paraffin-PDMS composites

Stefancich;Marco
2014

Abstract

Composites of paraffin wax and polydimethylsioxane (PDMS) have previously been demonstrated to exhibit thermally-induced switching between a transparent 'on' state and opaque 'off' state; however, the transmittance of the on state in previously investigated composites was found to decrease with increasing wax content, limiting the achievable off-on contrast. We present a new paraffin-PDMS composite formulation that exhibits essentially no decrease in on-state transparency up to a 10% wax concentration. We furthermore identify the underlying cause of the switching as a microstructural transformation from a homogeneous, transparent state to an inhomogeneous, light-scattering state as a result of the phase transition of the paraffin. We then present a model based on the theory of turbid media that allows for the estimation of the scattering power of a composite of known composition based on easily observed parameters, and suggests ways in which the contrast between the on and off states may be further enhanced.
2014
Istituto dei Materiali per l'Elettronica ed il Magnetismo - IMEM
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/262885
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