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首页> 外文期刊>Nanotechnology >Whole-journey nanomaterial research in an electron microscope: from material synthesis, composition characterization, property measurements to device construction and tests
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Whole-journey nanomaterial research in an electron microscope: from material synthesis, composition characterization, property measurements to device construction and tests

机译:电子显微镜中全程纳米​​材料的研究:从材料合成,成分表征,性能测量到器件构造和测试

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The whole-journey nanomaterial research from material synthesis, composition and structure characterizations, property measurements to device construction and tests in one equipment chamber provides a quick and unambiguous way of establishing the relationships between synthesis conditions, composition and structures, physical properties and nanodevice performances of nanomaterials; however, it still proves challenging. Herein, we report the whole-journey research of tungsten oxide nanowires in an environmental scanning electron microscope (ESEM) equipped with an x-ray energy dispersive spectrometer (EDS) and a multifunctional nanoprobe system. Tungsten oxide nanowires are synthesized by irradiating a tungsten filament using a high-energy laser in O-2 atmosphere with the dynamic growth processes of nanowires being directly visualized under ESEM observation. The as-synthesized nanowires are then characterized to be monoclinic W18O49 nanowires by combing in situ EDS and ex situ transmission electron microscopy. Important physical parameters, i.e. Young's modulus, breaking strength, and electrical conductivity, of W18O49 nanowires are determined based on in situ property measurements. Two-terminal electronic devices employing single W18O49 nanowires as the channel are in situ constructed and their performances as near-infrared photodetectors and water vapor sensors are studied. The whole-journey research establishes the relationships between synthesis conditions, composition and structures, physical properties and nanodevice performances of tungsten oxide nanowires, and can be applied to other nanomaterials.
机译:从材料合成,组成和结构表征,性能测量到设备构造以及在一个设备腔室内进行测试的全过程纳米材料研究提供了一种快速明确的方法来建立合成条件,组成和结构,物理性能和纳米器件性能之间的关系。纳米材料但是,它仍然证明具有挑战性。在这里,我们报道了在配备有X射线能量色散谱仪(EDS)和多功能纳米探针系统的环境扫描电子显微镜(ESEM)中对氧化钨纳米线的全过程研究。通过在O-2气氛中使用高能激光辐照钨丝来合成氧化钨纳米线,并在ESEM观察下直接观察纳米线的动态生长过程。然后,通过结合原位EDS和非原位透射电子显微镜将合成后的纳米线表征为单斜W18O49纳米线。 W18O49纳米线的重要物理参数,即杨氏模量,断裂强度和电导率,是根据原位特性测量结果确定的。以原位W18O49纳米线为通道的双端电子设备被原位构建,并研究了其作为近红外光电探测器和水蒸气传感器的性能。全程研究建立了氧化钨纳米线的合成条件,组成和结构,物理性质和纳米器件性能之间的关系,并可以应用于其他纳米材料。

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