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Energy scavenging using ZnO nanorods grown on flexible substrates

机译:使用在柔性基板上生长的ZnO纳米棒进行能量清除

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Vertical ZnO nanorods (NRs) were grown on flexible plastic substrates using the hydrothermal synthesis method. An energy scavenging piezoelectric device was developed by integrating two flexible substrates with the NR sides facing each other. With an applied mechanical compressive force, a maximum open-circuit voltage of 2.5 V (p-p) was measured. The ZnO piezoelectric device was also utilized to monitor human heartbeats that generated an output voltage of 150 mV per pulsation. The frequency response of the fabricated ZnO NR piezoelectric device was measured over a frequency range extending from 50 Hz to 20 kHz. The device exhibited a voltage ratio of 0.113 over the frequency range from 50 Hz to 800 Hz followed by a gradual decrease to 0.08 at 20 kHz. This is approximately eight times more sensitive at higher frequencies compared to commercial microphones.
机译:使用水热合成方法,在柔性塑料基板上生长垂直ZnO纳米棒(NRs)。通过集成两个NR面彼此相对的柔性基板,开发了一种能量清除压电器件。在施加机械压力的情况下,测得的最大开路电压为2.5 V(p-p)。 ZnO压电器件还用于监视人的心跳,该人的心跳每个脉动产生150 mV的输出电压。在从50 Hz到20 kHz的频率范围内测量了制成的ZnO NR压电器件的频率响应。在50 Hz至800 Hz的频率范围内,该器件的电压比为0.113,随后在20 kHz时逐渐降低至0.08。与商用麦克风相比,它在较高频率下的灵敏度大约高八倍。

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