ZnFe2O4@PDMS composite film for mechanical energy harvesting and tactile sensing application

MATERIALS TECHNOLOGY(2022)

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摘要
Multi-feature based nano- (and micro-) materials are highly promising candidates for mechanical energy harvesting. The impregnation of the nanocrystals in a polymer matrix modifies the electrical characteristics of a composite film; in consequence, it becomes a multifunctional composite membrane. Herein, we report cuboctahedron zinc ferrite (ZnFe2O4) microparticles in a polydimethylsiloxane (PDMS) (ZnFe2O4@PDMS)-based composite film for mechanical energy harvesting. Several composite films are prepared at different thicknesses and weight percentages (wt%). The composite film having a thickness of 750 mu m and 4 wt% generates a maximum open-circuit voltage (V-oc), short-circuit current (I-sc) and power of 60 V, 7.4 mu A and 97 mu W, respectively, by applying the contact-and-separation mode of a triboelectric nanogenerator. In addition, the film generates non-separation V-oc of 800 mV and I-sc of 580 nA. Eventually, the composite films were employed for tactile sensing applications. Versatile property-based ZnFe2O4@PDMS films can be further explored for hybrid device applications also.
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关键词
Wet-chemical synthesis, cuboctahedron zinc ferrite, triboelectric nanogenerator (TENG), PDMS composite film
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