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An Ultrasonic Fabrication Method for Epoxy Resin/SbSI Nanowire Composites and their Application in Nanosensors and Nanogenerators

机译:环氧树脂/ SbSI纳米线复合材料的超声制备方法及其在纳米传感器和发电机中的应用

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摘要

In this manuscript, a new fabrication technology for epoxy resin/antimony sulpho-iodide (SbSI) nanowire composites is presented. SbSI nanowires, with lateral dimensions of 10 nm to 100 nm and lengths up to several micrometres, have been synthesised using ultrasound irradiation. The prepared SbSI nanowires have been bound with epoxy resin in a mass ratio of 1:4, and then ultrasound irradiation has been used again for homogenization of the mixture. The fabricated epoxy resin/SbSI nanowire composites, due to the piezoelectric properties of SbSI (electromechanical coefficient k33 = 0.9, and piezoelectric coefficient dV = 0.9 × 10−9 C/N) may be used as an active layer in nanosensors and nanogenerators. The preliminary investigations of epoxy resin/SbSI nanowire composites for sound excitation (frequency f = 175 Hz; L = 90 dB), vibrations (f = 24 Hz; A = 1 mm; F = 0.73 N), and shock wave (p = 6 bar), allowed for the determination of the composite’s open circuit voltage: 0.0153 VRMS, 0.166 VRMS, and 4.51 Vp-p, respectively. Maximum power output densities of 0.45 nW/cm3 and 860 nW/cm3 have been achieved for excitation by sound and vibration, respectively, for a 0.6 mm thick layer of composite.
机译:在这份手稿中,提出了一种环氧树脂/锑碘化锑(SbSI)纳米线复合材料的新制造技术。 SbSI纳米线的横向尺寸为10 nm至100 nm,长度可达几微米,已通过超声辐照合成。制备的SbSI纳米线已与环氧树脂以1:4的质量比结合,然后再次使用超声辐照使混合物均质化。由于SbSI的压电特性(机电系数k33 = 0.9,压电系数dV = 0.9×10 -9 C / N),制成的环氧树脂/ SbSI纳米线复合材料可用作活性物质。纳米传感器和纳米发电机中的层。环氧树脂/ SbSI纳米线复合材料对声激发(频率f = 175 Hz; L = 90 dB),振动(f = 24 Hz; A = 1 mm; F = 0.73 N)和冲击波(p = 6 bar),用于确定复合材料的开路电压:分别为0.0153 VRMS,0.166 VRMS和4.51 Vp-p。对于0.6毫米厚的复合材料层,通过声音和振动激发,分别达到0.45 nW / cm 3 和860 nW / cm 3 的最大功率输出密度。 。

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