Please use this identifier to cite or link to this item: http://dr.iiserpune.ac.in:8080/xmlui/handle/123456789/7769
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dc.contributor.authorSAHOO, SUPRIYAen_US
dc.contributor.authorVIJAYAKANTH, THANGAVELen_US
dc.contributor.authorKothavade, Premkumaren_US
dc.contributor.authorDixit, Prashanten_US
dc.contributor.authorZaręba, Jan K.en_US
dc.contributor.authorShanmuganathan, Kadhiravanen_US
dc.contributor.authorBOOMISHANKAR, RAMAMOORTHYen_US
dc.date.accessioned2023-04-27T10:11:19Z-
dc.date.available2023-04-27T10:11:19Z-
dc.date.issued2022-03en_US
dc.identifier.citationACS Materials Au, 2(2), 124–131.en_US
dc.identifier.urihttps://doi.org/10.1021/acsmaterialsau.1c00046en_US
dc.identifier.urihttp://dr.iiserpune.ac.in:8080/xmlui/handle/123456789/7769-
dc.description.abstractPerovskite-structured compounds containing organic cations and inorganic anions have gained prominence as materials for next-generation electronic and energy devices. Hybrid materials possessing ferro- and piezoelectric properties are in recent focus for mechanical energy harvesting (nanogenerator) applications. Here, we report the ferroelectric behavior of A2BX4-type halogenocuprate materials supported by heteroleptic phosphonium cations. These lead-free discrete Cu(II) halides [Ph3MeP]2[CuCl4] (1) and [Ph3MeP]2[CuBr4] (2) exhibit a remnant polarization (Pr) of 17.16 and 26.02 μC cm–2, respectively, at room temperature. Furthermore, flexible polymer films were prepared with various weight percentage (wt %) compositions of 1 in thermoplastic polyurethane (TPU) and studied for mechanical energy harvesting applications. A highest peak-to-peak voltage output of 25 V and power density of 14.1 μW cm–2 were obtained for the optimal 15 wt % 1-TPU composite film. The obtained output voltages were utilized for charging a 100 μF electrolytic capacitor that reaches its maximum charging point within 30 s with sizable stored energies and accumulated charges.en_US
dc.language.isoenen_US
dc.publisherAmerican Chemical Societyen_US
dc.subjectHybrid Perovskiteen_US
dc.subjectPhosphonium Salten_US
dc.subjectFerroelectricen_US
dc.subjectPiezoelectricen_US
dc.subjectEnergy Harvestingen_US
dc.subject2022en_US
dc.titleFerroelectricity and Piezoelectric Energy Harvesting of Hybrid A2BX4-Type Halogenocuprates Stabilized by Phosphonium Cationsen_US
dc.typeArticleen_US
dc.contributor.departmentDept. of Chemistryen_US
dc.identifier.sourcetitleACS Materials Auen_US
dc.publication.originofpublisherForeignen_US
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