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FACULTY OF BIOLOGY, CHEMISTRY & EARTH SCIENCES

Chair of Physical Chemistry 1, Retsch group

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Tailor-made temperature-dependent thermal conductivity via interparticle constriction

17. November 2017

Science Advances  just published our work on tailor-made temperature-dependent thermal conductivity via interparticle constriction. Our findings outline a general approach to specifically tailor the temperature-dependent thermal conductivity of a nanostructured material. Our study is based on well-defined colloidal mesostructures. While this control is currently an irreversible, one-time process, it still presents a major step forward to the design of functional thermal materials. The full (open access) details can be found in DOI: 10.1126/sciadv.aao5238

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