Matches in SemOpenAlex for { <https://semopenalex.org/work/W3098738892> ?p ?o ?g. }
- W3098738892 endingPage "084902" @default.
- W3098738892 startingPage "084902" @default.
- W3098738892 abstract "The 3ω method is a dynamic measurement technique developed for determining the thermal conductivity of thin films or semi-infinite bulk materials. A simplified model is often applied to deduce the thermal conductivity from the slope of the real part of the ac temperature amplitude as a function of the logarithm of frequency, which in-turn brings a limitation on the kind of samples under observation. In this work, we have measured the thermal conductivity of a forest of nanowires embedded in nanoporous alumina membranes using the 3ω method. An analytical solution of 2D heat conduction is then used to model the multilayer system, considering the anisotropic thermal properties of the different layers, substrate thermal conductivity, and their thicknesses. Data treatment is performed by fitting the experimental results with the 2D model on two different sets of nanowires (silicon and BiSbTe) embedded in the matrix of nanoporous alumina templates, having thermal conductivities that differ by at least one order of magnitude. These experimental results show that this method extends the applicability of the 3ω technique to more complex systems having anisotropic thermal properties." @default.
- W3098738892 created "2020-11-23" @default.
- W3098738892 creator A5005567332 @default.
- W3098738892 creator A5008459221 @default.
- W3098738892 creator A5009412108 @default.
- W3098738892 creator A5009701422 @default.
- W3098738892 creator A5029438650 @default.
- W3098738892 creator A5051199470 @default.
- W3098738892 creator A5071702777 @default.
- W3098738892 creator A5078210951 @default.
- W3098738892 creator A5080287523 @default.
- W3098738892 creator A5091451505 @default.
- W3098738892 date "2018-08-01" @default.
- W3098738892 modified "2023-10-12" @default.
- W3098738892 title "Measurement of anisotropic thermal conductivity of a dense forest of nanowires using the 3<i>ω</i> method" @default.
- W3098738892 cites W1972680534 @default.
- W3098738892 cites W1973295217 @default.
- W3098738892 cites W1974625597 @default.
- W3098738892 cites W1976543642 @default.
- W3098738892 cites W1980351782 @default.
- W3098738892 cites W1985775156 @default.
- W3098738892 cites W1987066794 @default.
- W3098738892 cites W1990763851 @default.
- W3098738892 cites W1993491698 @default.
- W3098738892 cites W2000528999 @default.
- W3098738892 cites W2017969431 @default.
- W3098738892 cites W2018189177 @default.
- W3098738892 cites W2018798737 @default.
- W3098738892 cites W2025992073 @default.
- W3098738892 cites W2026220795 @default.
- W3098738892 cites W2029048256 @default.
- W3098738892 cites W2034082165 @default.
- W3098738892 cites W2041343096 @default.
- W3098738892 cites W2050674108 @default.
- W3098738892 cites W2061593278 @default.
- W3098738892 cites W2063136019 @default.
- W3098738892 cites W2066630330 @default.
- W3098738892 cites W2069027715 @default.
- W3098738892 cites W2070093297 @default.
- W3098738892 cites W2080778956 @default.
- W3098738892 cites W2087672208 @default.
- W3098738892 cites W2089595166 @default.
- W3098738892 cites W2094240247 @default.
- W3098738892 cites W2113042005 @default.
- W3098738892 cites W2132760400 @default.
- W3098738892 cites W2134636162 @default.
- W3098738892 cites W2134685049 @default.
- W3098738892 cites W2151592156 @default.
- W3098738892 cites W2154012089 @default.
- W3098738892 cites W2162647150 @default.
- W3098738892 cites W2166475097 @default.
- W3098738892 cites W2259748940 @default.
- W3098738892 cites W2277242992 @default.
- W3098738892 cites W2277574823 @default.
- W3098738892 cites W2297444313 @default.
- W3098738892 cites W2318215888 @default.
- W3098738892 cites W2507519717 @default.
- W3098738892 cites W2621951536 @default.
- W3098738892 cites W3099373086 @default.
- W3098738892 cites W3100535871 @default.
- W3098738892 doi "https://doi.org/10.1063/1.5025319" @default.
- W3098738892 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/30184711" @default.
- W3098738892 hasPublicationYear "2018" @default.
- W3098738892 type Work @default.
- W3098738892 sameAs 3098738892 @default.
- W3098738892 citedByCount "10" @default.
- W3098738892 countsByYear W30987388922019 @default.
- W3098738892 countsByYear W30987388922020 @default.
- W3098738892 countsByYear W30987388922021 @default.
- W3098738892 countsByYear W30987388922022 @default.
- W3098738892 crossrefType "journal-article" @default.
- W3098738892 hasAuthorship W3098738892A5005567332 @default.
- W3098738892 hasAuthorship W3098738892A5008459221 @default.
- W3098738892 hasAuthorship W3098738892A5009412108 @default.
- W3098738892 hasAuthorship W3098738892A5009701422 @default.
- W3098738892 hasAuthorship W3098738892A5029438650 @default.
- W3098738892 hasAuthorship W3098738892A5051199470 @default.
- W3098738892 hasAuthorship W3098738892A5071702777 @default.
- W3098738892 hasAuthorship W3098738892A5078210951 @default.
- W3098738892 hasAuthorship W3098738892A5080287523 @default.
- W3098738892 hasAuthorship W3098738892A5091451505 @default.
- W3098738892 hasBestOaLocation W30987388922 @default.
- W3098738892 hasConcept C102232406 @default.
- W3098738892 hasConcept C111368507 @default.
- W3098738892 hasConcept C120665830 @default.
- W3098738892 hasConcept C121332964 @default.
- W3098738892 hasConcept C127313418 @default.
- W3098738892 hasConcept C159985019 @default.
- W3098738892 hasConcept C171250308 @default.
- W3098738892 hasConcept C172100665 @default.
- W3098738892 hasConcept C18762648 @default.
- W3098738892 hasConcept C192562407 @default.
- W3098738892 hasConcept C204530211 @default.
- W3098738892 hasConcept C2777289219 @default.
- W3098738892 hasConcept C48940184 @default.
- W3098738892 hasConcept C49040817 @default.
- W3098738892 hasConcept C544956773 @default.
- W3098738892 hasConcept C74214498 @default.