The Investigation of CO2 Gas Sensing Performance of ZnO Nanorods Growth on RF Sputtered Seed Layer

F. Bulut, Ö. Öztürk, S. Acar
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Abstract

In this study, one-dimensional ZnO nanorod structures with different ratios of nickel doping were produced using the hydrothermal method. The presence of nickel doping in different ratios caused variations in the fundamental characteristics of the nanorods that grew on the RF sputtered seed layer, such as crystallinity quality, morphology, diameter of the nanorods, band gap energy, resistance of the sample, and CO2 gas sensing. Produced samples were found to form like hexagonal rods and crystallize in a wurtzite structure, and the ratio of nickel doping improved the crystallin quality and the morphology of sample surface. This study showed that the 5% nickel doped sample provided the most effective results in sensing CO2 gas at different concentrations. Overall, the study provided valuable insights into the relationship between doping system and the basic characteristics of wurtzite-type hexagonal ZnO.
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ZnO纳米棒在射频溅射种子层上生长的CO2气敏性能研究
本研究采用水热法制备了不同镍掺杂比例的一维ZnO纳米棒结构。不同比例的镍掺杂导致生长在射频溅射种子层上的纳米棒的基本特性发生变化,如结晶度质量、形貌、纳米棒直径、带隙能、样品电阻和CO2气体传感。制备的样品呈六角形棒状,结晶呈纤锌矿结构,镍掺杂的比例提高了样品的结晶质量和表面形貌。研究表明,5%镍掺杂样品对不同浓度CO2气体的传感效果最好。总的来说,该研究为掺杂体系与纤锌矿型六方ZnO的基本特性之间的关系提供了有价值的见解。
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