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Formation, cathodoluminescence and field emission of ZnO quantum dots attached on oxygen plasma activated carbon nanotubes

机译:氧等离子体活性碳纳米管上附着的Zn​​O量子点的形成,阴极发光和场发射

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A simple method to grow uniform ZnO quantum dots homogenously on the whole surface of multi-wall carbon nanotubes (MWCNTs) with oxygen plasma activation was reported in this work. The ZnO quantum dots can be successfully grown without catalyst using and well attached on the whole surface of MWCNTs with 20 s oxygen plasma treatment (O20). The ZnO quantum dots are uniform in the diameter of ∼15 nm, and exhibit a single crystalline hexagonal wurtzite structure with lattice fringe of ∼0.52 nm and growth direction along the [0001] axis from XRD and HRTEM results. Auger electron spectroscopy results show that the elemental composition of Zn on O20 sample can reach up to 43.8%, and the Zn/O ratio is ∼1. From cathodoluminescence results, O20 sample shows a small ratio of green emission intensity to ultra-violet emission intensity, revealing that O20 sample has a highly crystalline structure with fewer oxygen deficiencies. ZnO quantum dots attached on MWCNTs with longer durations of oxygen plasma treatment result in a slight blue shift of both UV and green emission. Besides, O20 sample also reveals outstanding field emission properties (turn-on field of 0.27 V/µm, threshold field of 3.24 V/µm, field enhancement factor of 11897) greater than pristine MWCNTs (turn-on field of 4.39 V/µm, threshold field of 6.16 V/µm, field enhancement factor of 1582). Therefore, ZnO quantum dots attached on oxygen plasma activated carbon nanotubes successfully combine the particular advantages of ZnO and MWCNTs.
机译:在这项工作中报道了一种通过氧等离子体活化在多壁碳纳米管(MWCNT)的整个表面上均匀生长均匀ZnO量子点的简单方法。使用20秒钟的氧等离子体处理(O20),无需使用催化剂即可成功生长ZnO量子点,并将其良好地附着在MWCNT的整个表面上。 ZnO量子点的直径约为15 nm,是均匀的,并呈现出单晶六方纤锌矿结构,其晶格条纹约为0.52 nm,并且从XRD和HRTEM结果沿[0001]轴方向生长。俄歇电子能谱分析结果表明,O20样品中Zn的元素组成可达43.8%,Zn / O比约为1。从阴极发光结果来看,O20样品的绿色发射强度与紫外线发射强度的比值较小,这表明O20样品具有高度结晶的结构,氧缺乏症较少。用较长时间的氧等离子体处理附着在MWCNT上的ZnO量子点会导致UV和绿色发射的轻微蓝移。此外,O20样品还显示出比原始MWCNT(开通电场为4.39 V / µm,更大的场发射特性(0.27 V / µm的导通场,3.24 V / µm的阈值场,11897的场增强因子)更大的场发射特性。阈值场为6.16 V / µm,场增强因子为1582)。因此,附着在氧等离子体活性碳纳米管上的ZnO量子点成功地结合了ZnO和MWCNT的特殊优势。

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