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The synthesis and selective gas sensing characteristics of SnO2/alpha-Fe2O3 hierarchical nanostructures

机译:SnO2 /α-Fe2O3分级纳米结构的合成及选择性气敏特性

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SnO2/alpha-Fe2O3 hierarchical nanostructures, in which the SnO2 nanorods grow on the side surface of alpha-Fe2O3 nanorods as multiple rows, were synthesized via a three-stEP 20process. The diameters and lengths of the SnO2 nanorods are 6-15 nm and about 120 nm. The growth direction of SnO2 nanorods is [001], significantly affected by that of alpha-Fe2O3 nanorods. The hetero-nanostructures exhibit very good selectivity to ethanol. The sensing characteristics are related to the special heterojunction structures, confirmed by high-resolution transmission electron microscopy observation. Therefore, a heterojunction barrier controlled gas sensing mechanism is realized. Our results demonstrate that the hetero-nanostructures are promising materials for fabricating sensors and other complex devices.
机译:通过三步法20工艺合成了SnO2 /α-Fe2O3分层纳米结构,其中SnO2纳米棒以多行的形式生长在α-Fe2O3纳米棒的侧面。 SnO 2纳米棒的直径和长度为6-15nm和约120nm。 SnO2纳米棒的生长方向为[001],受到α-Fe2O3纳米棒的生长方向的显着影响。杂纳米结构对乙醇显示出非常好的选择性。传感特性与特殊的异质结结构有关,已通过高分辨率透射电子显微镜观察得到证实。因此,实现了异质结势垒控制的气体感测机构。我们的结果表明,异质纳米结构是用于制造传感器和其他复杂设备的有前途的材料。

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