2022
DOI: 10.1007/s10854-022-07727-7
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Improved triboelectric performance of polydimethylsiloxane reinforced with ferroelectric composite oxide

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Cited by 6 publications
(3 citation statements)
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“…For the selection of fillers, various inorganic nanoparticles have been used in energy harvesting such as ZnO, 42 TiO 2 , 43 and SrTiO 3 . 44 Sriphan et al doped Ti 0.8 O 2 nanosheets/silver nanoparticles/BaTiO 3 nanopowders into PDMS membrane to act as the friction layer, which shows that the output performance was approximately dozens times higher than pure PDMS. 45 Lim's group studied the influence of various structured ZnO/PVA nanocomposites, including unoriented (nanosheet, nanoplate), oriented (nanowire, nanorod), and hierarchical (nanobranch) structures, on the output properties of TENG.…”
Section: Introductionmentioning
confidence: 99%
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“…For the selection of fillers, various inorganic nanoparticles have been used in energy harvesting such as ZnO, 42 TiO 2 , 43 and SrTiO 3 . 44 Sriphan et al doped Ti 0.8 O 2 nanosheets/silver nanoparticles/BaTiO 3 nanopowders into PDMS membrane to act as the friction layer, which shows that the output performance was approximately dozens times higher than pure PDMS. 45 Lim's group studied the influence of various structured ZnO/PVA nanocomposites, including unoriented (nanosheet, nanoplate), oriented (nanowire, nanorod), and hierarchical (nanobranch) structures, on the output properties of TENG.…”
Section: Introductionmentioning
confidence: 99%
“…However, the dielectric performance of these polymers is relatively low; thus, the composite film, which consists of inorganic nanoparticles with high dielectric performance and an organic matrix, is widely researched as the friction layer. For the selection of fillers, various inorganic nanoparticles have been used in energy harvesting such as ZnO, TiO 2 , and SrTiO 3 . Sriphan et al doped Ti 0.8 O 2 nanosheets/silver nanoparticles/BaTiO 3 nanopowders into PDMS membrane to act as the friction layer, which shows that the output performance was approximately dozens times higher than pure PDMS .…”
Section: Introductionmentioning
confidence: 99%
“…[17,18,25] This approach solves the complex structural problem, while also enabling interactions between the individual reactions, which facilitates the output performance. This design is usually based on materials with multifunctional electrical properties, such as ferroelectric materials, [9,26,27] which can exhibit photoelectric, pyroelectric, and piezoelectric properties at the same time. [21,[28][29][30] However, when these various mechanisms are combined, they often do not always operate cooperatively and interact intermittently with each other constructively or destructively, thereby reducing the harvested output.…”
Section: Introductionmentioning
confidence: 99%