首页> 外文会议>2013 IEEE 5th International Nanoelectronics Conference. >Thickness effect of sputtered ZnO seed layer on the electrical properties of Li-doped ZnO nanorods and application on the UV photodetector
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Thickness effect of sputtered ZnO seed layer on the electrical properties of Li-doped ZnO nanorods and application on the UV photodetector

机译:溅射ZnO籽晶层的厚度对掺Li的ZnO纳米棒电性能的影响及其在紫外光电探测器上的应用

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Well-defined Zn0.9Li0.1O nanorods were hydrothermally synthesized at the low temperature of 90°C on the sputtered ZnO seed layer in different thickness, 20 nm and 50 nm. The x-ray diffraction patterns of both samples with a single diffraction peak (002) showed the same wurtzite hexagonal structure. The length and diameter of the nanorods were both increased from 1.12 μm to 1.47 μm and 95 nm to 113 nm, respectively, while increasing the sputtered ZnO seed layer thickness from 20 nm to 50 nm. The optical properties were influenced by the presence of oxygen vacancies induced by Li doping in the Zn0.9Li0.1O nanorods. Besides, p-type ZnO-based semiconductor nanorods were obtained by the doping of Li into ZnO. Finally, the UV photodetectors with (p-Zn0.9Li0.1O nanorods)/(n-Si subatrate) structure were also achieved. The I-V characteristics of the UV photodetector with p-ZnO:Li nanorod-Si structure were also measured. The UV illumination/dark current ratio of the photodetectors with different seeded layer, 20nm and 50nm, were also measured as 201% and 364%, respectively.
机译:在90°C的低温下,在溅射后的ZnO晶种层上以20 nm和50 nm的不同厚度水热合成了定义明确的Zn 0.9 Li 0.1 O纳米棒。具有单个衍射峰(002)的两个样品的x射线衍射图显示出相同的纤锌矿六方结构。纳米棒的长度和直径都分别从1.12μm增加到1.47μm,从95 nm增加到113 nm,同时将溅射的ZnO种子层厚度从20 nm增加到50 nm。光学性质受Zn 0 9 Li 0 1 < / inf> O纳米棒。此外,通过将Li掺杂到ZnO中获得了p型ZnO基半导体纳米棒。最后,带有(p-Zn 0 9 Li 0 1 O纳米棒的紫外光电探测器)/(也获得了n-Si亚酸盐)结构。还测量了具有p-ZnO:Li纳米棒/ n-Si结构的紫外线光电探测器的I-V特性。具有不同籽晶层(20nm和50nm)的光电探测器的UV照明/暗电流比也分别测得为201%和364%。

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