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- W3201929213 abstract "Heat dissipation materials in which fillers are dispersed in a polymer matrix typically do not exhibit both high thermal conductivity (k) and processability due to a trade-off. In this paper, we fabricate heat dissipation composites which overcome the trade-off using liquid metal (LM). By exceeding the conventional filler limit, ten times higher k is achieved for a 90 vol% LM composite compared with k of 50 vol% LM composite. Further, an even higher k is achieved by introducing h-BN between the LM droplets, and the highest k in this study was 17.1 W m-1 K-1. The LM composite is processable at room temperature and used as inks for 3D printing. This combination of high k and processability not only allows heat dissipation materials to be processed on demand under ambient conditions but it also increases the surface area of the LM composite, which enables rapid heat dissipation." @default.
- W3201929213 created "2021-10-11" @default.
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- W3201929213 date "2021-10-01" @default.
- W3201929213 modified "2023-10-12" @default.
- W3201929213 title "3D Printable concentrated liquid metal composite with high thermal conductivity" @default.
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- W3201929213 doi "https://doi.org/10.1016/j.isci.2021.103183" @default.
- W3201929213 hasPubMedCentralId "https://www.ncbi.nlm.nih.gov/pmc/articles/8524151" @default.
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