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Bifunctional Fe3O4@AuNWs particle as wearable bending and strain sensor

机译:双功能FE3O4 @ AUNWS粒子作为可穿戴弯曲和应变传感器

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摘要

We report on synthesis of a new bifunctional particle carefully designed and engineered with additional magnetic sensing functionality on top of existing gold nanowires platform with good electrical conductivity. The bifunctional particle synthesized can be utilized for fabrication of soft wearable sensors. The pressure sensor fabricated using bifunctional particle shows a linear response to wide range of pressure from 500 Pa to 10 kPa with sensitivity of 0.6 kPa(-1). For strain sensing, the gauge factor was divided into two sections, one with low strain of similar to 1% to 20% with gauge factor of 2.15 and another with high strain from similar to 20% to 100% with gauge factor of 0.45. The durability of the strain sensor was tested under cyclic loading test of 10,000 cycles with 10% strain without any performance loss. The strain limit was also investigated and sensor was found to lose its conductivity at similar to 170% strain. The bifunctional particle sensor system was also demonstrated its capability for magnetic field sensing and wind speed sensing.
机译:我们报告了在具有良好导电性的现有金纳米线平台上具有额外的磁感测功能的新型双功能粒子的合成报告。合成的双功能颗粒可用于制造软可穿戴传感器。使用双官能颗粒制造的压力传感器显示出从500Pa至10kPa的宽范围压力的线性响应,灵敏度为0.6kPa(-1)。对于应变感测,将量因子分成两个部分,具有低应变的菌株,与2.15的量因子,215且具有高菌株的25%,具有0.45的量因子,具有高菌株的另一个菌株。应变传感器的耐久性在10,000个循环的循环加载试验下测试,10%菌株,没有任何性能损失。还研究了应变极限,发现传感器在类似于170%的菌株时失去其电导率。双功能粒子传感器系统还展示了其磁场感测和风速感测的能力。

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