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DIRECTED ASSEMBLY OF METAL OXIDE NANOBELTS WITH MICROSYSTEMS INTO INTEGRATED NANOSENSORS

机译:金属氧化物纳米螺纹的定向组装成微系统进入整合纳米调传料

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Single-crystalline tin dioxide (SnO_2) nanobelts have been assembled with microfabricated suspended heaters as low-power, sensitive gas sensors. With less than 4 mW power consumption of the micro-heater, the nanobelt can be heated up to 500°C. The electrical conductance of the heated nanobelt was found to be highly stable and sensitive to toxic and inflammable gas species including dimethyl methyl phosphonate (DMMP), nitrogen dioxide (NO_2), and ethanol. The experiment is a step towards the large scale integration of nanomaterials with microsystems, and such integration via a directed assembly approach can potentially enable the fabrication of low-power, sensitive, and selective integrated nanosensor systems.
机译:单晶锡(SnO_2)纳米纤维已经用微制成的悬浮加热器组装,作为低功率,敏感的气体传感器。 微加热器的低于4 MW功耗,纳米料可加热至500°C。 发现加热纳米纤维的电导是高度稳定和敏感的毒性和易燃气体物种,包括二甲基磷酸二甲基膦酸酯(DMMP),二氧化氮(NO_2)和乙醇。 该实验是朝向微观级别与微系统的大规模集成的一步,并且通过定向组装方法的这种集成可以潜在地能够制造低功率,灵敏和选择性的纳米传感器系统。

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