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Electrical four-point probing of spherical metallic thin films coated onto micron sized polymer particles

Pettersen, Sigurd Rolland; Stokkeland, August Emil; Kristiansen, Helge; njagi, john; Redford, Keith; Goia, Dan; Zhang, Zhiliang; He, Jianying
Journal article, Peer reviewed
Published version
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2016-Sigurd_APL_4point+probing.pdf (701.6Kb)
Permanent lenke
http://hdl.handle.net/11250/2565147
Utgivelsesdato
2016
Metadata
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  • Institutt for konstruksjonsteknikk [1595]
  • Publikasjoner fra CRIStin - NTNU [20747]
Originalversjon
Applied Physics Letters. 2016, 109 (4), .   10.1063/1.4959783
Sammendrag
Micron-sized metal-coated polymer spheres are frequently used as filler particles in conductive composites for electronic interconnects. However, the intrinsic electrical resistivity of the spherical thin films has not been attainable due to deficiency in methods that eliminate the effect of contact resistance. In this work, a four-point probing method using vacuum compatible piezo-actuated micro robots was developed to directly investigate the electric properties of individual silver-coated spheres under real-time observation in a scanning electron microscope. PMMA spheres with a diameter of 30 μm and four different film thicknesses (270 nm, 150 nm, 100 nm, and 60 nm) were investigated. By multiplying the experimental results with geometrical correction factors obtained using finite element models, the resistivities of the thin films were estimated for the four thicknesses. These were higher than the resistivity of bulk silver.
Utgiver
AIP Publishing
Tidsskrift
Applied Physics Letters

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