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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >A self-powered and arch-structured triboelectric nanogenerator for portable electronics and human-machine communication
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A self-powered and arch-structured triboelectric nanogenerator for portable electronics and human-machine communication

机译:用于便携式电子和人机通信的自动和拱形结构的摩擦纳米电磁炉

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An arch-structured triboelectric nanogenerator (TENG) was developed using nanofibrous poly(vinylidene fluoride-hexafluoropropylene) (PVDF-HFP) and nylon 6,6 (PA) membranes as the triboelectric pair and conductive fabrics as the electrodes. The nanofibrous microstructure and tribopolarity differences between the two triboelectric layers endow the TENG with outstanding triboelectric output performances, including an open-circuit voltage of 141.6 V and a short-circuit current of 20.4 mu A. A maximum power density of 31.96 W m(-2) was achieved at a load resistance of 10(6) omega. The arch-structured TENG with such a high-power density has the ability to power portable small electronics, such as light-emitting-diodes (LEDs), liquid crystal displays (LCDs) and calculators. A self-powered sensing system was also fabricated using an arch-structured TENG and a signal processing circuit. The self-powered sensing system can readily detect the triboelectric signal generated by finger pressing and can effectively switch small electronics (e.g., an LED and a small motor) on and off. In addition, a TENG-based calculator was fabricated using 16 separate arch-structured TENGs that acted as the function keys of the calculator. Through real-time communication between a TENG-based calculator, a signal processing circuit and a computer, the TENG-based calculation system is able to complete the mathematical calculation process after the corresponding function keys were pressed. Therefore, an arch-structured TENG can not only power portable electronics, but also function as self-powered sensors in human-machine communication.
机译:使用纳米纤维聚(偏二氟乙烯 - 六氟丙烯)(PVDF-HFP)和尼龙6,6(PA)膜作为摩擦电对和导电织物作为电极,开发了拱形结构的摩擦纳米料仪(Teng)。两个摩擦层之间的纳米纤维微观结构和二极聚差异赋予腾腾的统一摩擦输出性能,包括141.6 V的开路电压,短路电流为20.4亩A.最大功率密度为31.96WM( - 2)以10(6)Ω的载荷电阻实现。具有这种高功率密度的拱形结构腾具有能够为供电便携式小电子产品,例如发光二极管(LED),液晶显示器(LCD)和计算器。使用ARCH结构腾和信号处理电路也制造了一种自动传感系统。自给自动力传感系统可以容易地检测由手指压制产生的摩擦信号,并且可以有效地开启和关闭小电子(例如,LED和小电动机)。此外,使用16个单独的拱形结构腾腾制造了基于腾基的计算器,该Tengs充当了计算器的功能键。通过基于Teng的计算器之间的实时通信,信号处理电路和计算机,基于Teng的计算系统能够在按下相应的功能键后完成数学计算过程。因此,拱形结构腾腾不仅可以动力便携式电子设备,还可以用作人机通信中的自动传感器。

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