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Intrinsic piezoelectric characterization of BiFeO_3 nanofibers and its implications for energy harvesting

机译:BifeO_3纳米纤维的内在压电表征及其对能量收割的影响

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Perovskite oxide-based ferroelectrics are interesting in energy applications due to their electrical and optical properties. Nanostructuring opens new paths to increase the surface-to-volume ratio, porosity, and mechanical flexibility as compared with bulk materials, improving and tuning properties associated with piezoelectricity, ferroelectricity, piezoelectrochemistry, electrical conductivity, and catalysis. To elucidate the impact of nanostructuration, in piezoelectricity, we characterized one of the most promising perovskite materials, bismuth ferrite (BiFeO3), in the form of 1D nanostructures, namely nanofibers. A set of BiFeOx precursor nanofibers were electrospun from a chemical sol and calcined at 600 degrees C to obtain the final BiFeO3 nanofiber structure. By scanning the nanofiber sample, the piezo-generated charge at the nanoscale level was studied by Direct Piezoelectric Force Microscopy (DPFM). Our results report that the direct piezoelectric coefficient of the polycrystalline nanofibers is d(33) = 11 pC/N, which corresponds to a smaller value as compared with epitaxial films, 22 pC/N for 60 nm films and 43 pC/N for 400 nm films. The diminishing of piezoelectric property characteristics is mainly attributed to the impact of nanostructuration. The nanofibers impose another clamping factor that decreases the BiFeO3 piezoelectric property, reducing their use as energy harvesters in favor of catalytic applications, water splitting, or photovoltaic applications.
机译:由于其电气和光学性质,钙钛矿基铁的铁电性是有趣的能量应用。纳米结构打开新的途径,以增加与散装材料相比的表面到体积比,孔隙率和机械柔韧性,改善和调节与压电,铁电,压电化学,导电性和催化的相关性。为了阐明纳米结构的影响,在压电性中,我们以1D纳米结构,即纳米纤维的形式表征了最有前景的钙钛矿材料,铋铁氧体(BIFEO3)之一。从化学溶胶中电纺丝将一组BiFeox前体纳米纤维在600℃下煅烧以获得最终的BifeO3纳米纤维结构。通过扫描纳米纤维样品,通过直接压电力显微镜(DPFM)研究纳米级水平的压电产生的电荷。我们的结果报告称,多晶纳米纤维的直接压电系数是D(33)= 11pc / n,其与与外延膜相比的值相比,对于60nm薄膜22pc / n相比,43 pc / n为400纳米电影。压电性质特征的减少主要归因于纳米结构的影响。纳米纤维施加另一个夹紧因子,该夹紧因子降低了BifeO3压电性能,从而减少了它们作为能量收割机的用途,有利于催化应用,水分裂或光伏应用。

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