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Diameter-controlled synthesis of ZnO nanorods on Fe-doped ZnO seed layer and enhanced photodetection performance

机译:铁掺杂ZnO种子层上ZnO纳米棒的直径控制合成及增强的光检测性能

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摘要

In this study, we fabricated ZnO nanorods grown on Fe-doped ZnO seed layer by a hydrothermal method. The effects of seed layer on growth of ZnO nanorods and their electrical and photodetection properties were systematically investigated. Results indicate that the average diameter of ZnO nanorods decreases with increasing Fe concentration while the nanorods number density has an increasing trend. The X-ray analysis showed that there is a preferred growth orientation rods in all samples. The electrical resistance of ZnO NRs reduces with increasing of Fe dopant up to 1.5 at.% and then increases with 4.5% Fe in seed layer. Also, the photodetection performance of ZnO nanorod-based photodetectors grown on the Fe doped seed layer improved as sensitivity increased similar to 377 for the sample grown on ZnO seed layer with 4.5 at.% Fe dopant under ultraviolet illumination and the responsivity increased similar to 18.6A/W for sensor including seed layer with 1.5 at.% Fe. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在这项研究中,我们通过水热法制备了在掺铁的ZnO种子层上生长的ZnO纳米棒。系统地研究了种子层对ZnO纳米棒生长及其电学和光电探测性能的影响。结果表明,ZnO纳米棒的平均直径随Fe浓度的增加而减小,而纳米棒的数量密度却呈增加趋势。 X射线分析表明,在所有样品中都有优选的生长取向棒。 ZnO NRs的电阻会随着Fe掺杂剂的增加而降低,直至1.5 at。%,然后在籽晶层中随Fe的增加而增加4.5%。同样,在灵敏度提高的情况下,在掺有Fe的籽晶层上生长的ZnO纳米棒基光电探测器的光电检测性能得到改善,类似于在紫外线照射下以4.5at。%的Fe掺杂剂生长在ZnO籽晶层上的样品的377相似,并且响应度类似于18.6传感器的A / W,包括具有1.5 at。%Fe的种子层。 (C)2017 Elsevier Ltd.保留所有权利。

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