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Self-Powered Triboelectric Nanosensors for Soft Endoscopic and Catheter Applications

机译:用于软内窥镜和导管应用的自动摩擦纳米传感器

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The design of endoscopes has not considered the compliance adaptability inside the body. Hence, endoscopy procedures are harmful and even fatal during endoscopic procedure when using commercial endoscopes. A cutting-edge technology should involve the redesign of endoscopes based on stimuli responsive integrated devices. Herein, we report and discuss the results of soft sensors integrated in a custom pneumatically actuated soft silicone-structure simulating the shape of soft endoscopes and catheters that can respond to low-load sensing capabilities such as tactile and multidirectional stimuli. For this purpose, two triboelectric nanogenerator based-sensors, lateral and semispherical, were integrated. Lateral sensor showed the highest voltage outputs (1.25 V) at 45 kPa of pressure, while pressures of 30 and 35 kPa generated voltages of 100 and 500 mV, respectively; showing high sensitivity at very low pressures. Moreover, regarding multidirectional sensing, the semispherical sensor showed voltage outputs of 110 mV for 0 degrees of interaction with regard to axial axis, while 75-85 mV for interaction angles of 30 and 60 degrees.
机译:内窥镜的设计尚未考虑身体内部的合规适应性。因此,当使用商业内窥镜时,内窥镜检查程序在内窥镜程序期间是有害甚至致命的。尖端技术应涉及基于刺激响应综合装置的内窥镜重新设计。在此,我们报告并讨论了在定制气动致动软硅树结构中集成的软传感器的结果模拟了可以响应低负载感测能力,例如触觉和多向刺激的导管的形状。为此目的,整合了两个基于摩擦纳米料,横向和半球形的传感器。横向传感器在45 kPa的压力下显示最高电压输出(1.25 v),而30和35kPa的压力分别为100和500 mV的电压;在非常低的压力下显示出高灵敏度。此外,关于多向感测,半球形传感器显示出110mV的电压输出,对于轴向轴,对于0.35-85mV,用于30至60度的相互作用角度。

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