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Transport properties and sensing responses of platinum nanoparticles/graphene structure fabricated by thermal annealing process

机译:热退火工艺制备的铂纳米颗粒/石墨烯结构的输运性质和传感响应

摘要

The effects of the annealing temperatures and thicknesses on the shapes, sizes and arrangement of platinum (Pt) nanoparticles (NPs) on graphene and their sensing performance for hydrogen (H2) detection were investigated. It shows strong dependency of the annealing temperatures and thicknesses on the properties of NPs. It was found that the proposed technique is able to form the NPs with good size controllability and uniformity even for thick deposited layer, thus eliminating the requirement of very thin layer of below 5 nm for the direct NP synthesis by evaporation or sputtering. The transport properties of Pt NPs/graphene structure and its sensing performance on H2 at room temperature under various H2 concentration were evaluated. The results showed an acceptable sensing response, indicating an innovative approach to fabricate Pt NPs embedded graphene for gas sensing application.
机译:研究了退火温度和厚度对铂(Pt)纳米颗粒(NPs)在石墨烯上的形状,大小和排列的影响及其对氢气(H2)检测的传感性能。它显示出退火温度和厚度对NPs性能的强烈依赖性。发现所提出的技术甚至对于厚的沉积层也能够形成具有良好的尺寸可控性和均匀性的NP,因此消除了通过蒸发或溅射直接NP合成对5nm以下的非常薄的层的需求。评价了Pt NPs /石墨烯结构的输运性质及其在室温,不同氢气浓度下对氢气的传感性能。结果显示出可接受的感测响应,表明了一种创新的方法可制备用于气体感测应用的Pt NPs嵌入式石墨烯。

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