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- W2888890690 abstract "We present electrostrictive materials with excellent properties for vibrational energy harvesting applications. The developed materials consist of a porous carbon black composite, which is processed using water-in-oil emulsions. In combination with an insulating layer, the investigated structures exhibit a high effective relative dielectric permittivity (up to 182 at 100 Hz) with very low effective conductivity (down to 2.53 10−8 S m−1). They can generate electrical energy in response to mechanical vibrations with a power density of 0.38 W m−3 under an applied bias electric field of 32 V. They display figures or merit for energy harvesting applications well above reference polymer materials in the field, including fluorinated co- and ter-polymers synthetized by heavy chemical processes. The production process of the present materials is based on non hazardous and low-cost chemicals. The soft dielectric materials are highly flexible (Young's modulus of ∼1 MPa) making them also suited for highly sensitive capacitive sensors." @default.
- W2888890690 created "2018-09-07" @default.
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- W2888890690 date "2018-08-28" @default.
- W2888890690 modified "2023-10-18" @default.
- W2888890690 title "Microporous electrostrictive materials for vibrational energy harvesting" @default.
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- W2888890690 doi "https://doi.org/10.1088/2399-7532/aab2ff" @default.
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