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2 p, 969.8 KB Erratum : Thermal transport in silver-coated polymer sphere composites by the bidirectional 3ω method (J. Appl. Phys. 131, 125107 (2022)] / Sandell, Susanne (Norwegian University of Science and Technology. Department of Structural Engineering) ; Wang, Thorstein (Norwegian University of Science and Technology. Department of Structural Engineering) ; Chávez Ángel, Emigdio (Institut Català de Nanociència i Nanotecnologia) ; Kristiansen, Helge (Conpart AS) ; Zhang, Zhiliang (Norwegian University of Science and Technology. Department of Structural Engineering) ; He, Jianying (Norwegian University of Science and Technology. Department of Structural Engineering)
On p. 125107-2 of the original paper,1 a sentence reading "As a rule of thumb, V3? is typically three orders of magnitude larger than V0. " should read as "As a rule of thumb, V3? is typically three orders of magnitude smaller than V0. [...]
2022 - 10.1063/5.0123921
Journal of applied physics, Vol. 132, issue 12 (Sep. 2022) , art. 129903  
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9 p, 1.6 MB Thermal transport in silver-coated polymer sphere composites by the bidirectional 3 ω method / Sandell, Susanne (Norwegian University of Science and Technology. Department of Structural Engineering) ; Wang, Thorstein (Norwegian University of Science and Technology. Department of Structural Engineering) ; Chávez Ángel, Emigdio (Institut Català de Nanociència i Nanotecnologia) ; Kristiansen, Helge (Conpart AS) ; Zhang, Zhiliang (Norwegian University of Science and Technology. Department of Structural Engineering) ; He, Jianying (Norwegian University of Science and Technology. Department of Structural Engineering)
The bidirectional 3 ω method is an electrothermal technique that is commonly used to obtain the thermal conductivity of materials such as liquids, biological samples, and pastes. In this work, an epoxy-based adhesive was filled with monodisperse 10 μm polymethyl methacrylate spheres coated with silver thin films (AgPS), such that a metallic network that dominated the thermal transport was formed through the composite. [...]
2022 - 10.1063/5.0080682
Journal of applied physics, Vol. 131, issue 12 (March 2022) , art. 125107  
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11 p, 1.5 MB Enhancement of thermal boundary conductance of metal-polymer system / Sandell, Susanne (Norwegian University of Science and Technology. Department of Structural Engineering) ; Maire, Jeremie (Institut Català de Nanociència i Nanotecnologia) ; Chávez Ángel, Emigdio (Institut Català de Nanociència i Nanotecnologia) ; Sotomayor Torres, Clivia M. (Institut Català de Nanociència i Nanotecnologia) ; Kristiansen, Helge (Norwegian University of Science and Technology. Department of Structural Engineering) ; Zhang, Zhiliang (Norwegian University of Science and Technology. Department of Structural Engineering) ; He, Jianying (Norwegian University of Science and Technology. Department of Structural Engineering)
In organic electronics, thermal management is a challenge, as most organic materials conduct heat poorly. As these devices become smaller, thermal transport is increasingly limited by organic-inorganic interfaces, for example that between a metal and a polymer. [...]
2020 - 10.3390/nano10040670
Nanomaterials, Vol. 10, issue 4 (April 2020) , art. 670  

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