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Thermal conductivity and nanocrystalline structure of platinum deposited by focused ion beam

机译:聚焦离子束沉积铂的热导率和纳米晶体结构

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Pt deposited by focused ion beam (FIB) is a common material used for attachment of nanosamples, repair of integrated circuits, and synthesis of nanostructures. Despite its common use little information is available on its thermal properties. In this work, Pt deposited by FIB is characterized thermally, structurally, and chemically. Its thermal conductivity is found to be substantially lower than the bulk value of Pt, 7.2 W m(-1) K-1 versus 71.6 W m(-1) K-1 at room temperature. The low thermal conductivity is attributed to the nanostructure of the material and its chemical composition. Pt deposited by FIB is shown, via aberration corrected TEM, to be a segregated mix of nanocrystalline Pt and amorphous C with Ga and O impurities. Ga impurities mainly reside in the Pt while O is homogeneously distributed throughout. The Ga impurity, small grain size of the Pt, and the amorphous carbon between grains are the cause for the low thermal conductivity of this material. Since Pt deposited by FIB is a common material for affixing samples, this information can be used to assess systematic errors in thermal characterization of different nanosamples. This application is also demonstrated by thermal characterization of two carbon nanofibers and a correction using the reported thermal properties of the Pt deposited by FIB.
机译:聚焦离子束(FIB)沉积的Pt是用于附着纳米样品,修复集成电路和合成纳米结构的常用材料。尽管具有通用性,但有关其热性能的信息却很少。在这项工作中,FIB沉积的Pt具有热,结构和化学特性。发现其导热系数显着低于Pt的体积值,在室温下为7.2 W m(-1)K-1与71.6 W m(-1)K-1。低导热率归因于材料的纳米结构及其化学组成。 FIB沉积的Pt(通过像差校正TEM)显示为纳米晶体Pt和非晶C与Ga和O杂质的分离混合物。 Ga杂质主要存在于Pt中,而O则始终均匀分布。 Ga杂质,Pt的小粒径和晶粒间的无定形碳是该材料的低导热率的原因。由于FIB沉积的Pt是固定样品的常用材料,因此该信息可用于评估不同纳米样品的热表征中的系统误差。两种碳纳米纤维的热特性以及使用FIB沉积的Pt的热学性质进行的校正也证明了该应用。

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