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In situ chemoresistive sensing in the environmental TEM: probing functional devices and their nanoscale morphology

机译:原位chemoresistive感应的环境TEM:探测设备和功能他们的纳米形态

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In situ transmission electron microscopy provides exciting opportunities to address fundamental questions and technological aspects related to functional nanomaterials, including the structureproperty relationships of miniaturized electronic devices. Herein, we report the in situ chemoresistive sensing in the environmental transmission electron microscope (TEM) with a single SnO2 nanowire device, studying the impact of surface functionalization with heterogeneous nanocatalysts. By detecting toxic carbon monoxide (CO) gas at ppm-level concentrations inside the microscope column, the sensing properties of a single SnO2 nanowire were characterized before and after decoration with hybrid Fe-Pd nanocubes. The structural changes of the supported nanoparticles induced by sensor operation were revealed, enabling direct correlation with CO sensing properties. Our novel approach is applicable for a broad range of functional nanomaterials and paves the way for future studies on the relationship between chemoresistive properties and nanoscale morphology.
机译:原位透射电子显微镜提供解决基本的激动人心的机会问题和技术方面相关功能纳米材料,包括structureproperty小型化的关系电子设备。chemoresistive传感环境透射电子显微镜(TEM)单一SnO2纳米线设备,影响学习异构的表面功能化nanocatalysts。(公司)内气体浓度在ppm显微镜列的传感特性单身SnO2纳米线的特征和装饰后混合Fe-Pd nanocubes。受支持的结构性变化纳米颗粒传感器操作引起的与公司透露,这使得人们可以直接相关传感特性。适用于范围广泛的功能纳米材料和为未来铺平了道路研究之间的关系chemoresistive属性和纳米形态。

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