Supercooling suppression and thermal conductivity enhancement of erythritol using graphite foam with ultrahigh thermal conductivity for thermal energy storage
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Elsevier BV
Reference34 articles.
1. MXene/d-mannitol aerogel phase change material composites for medium-temperature energy storage and solar-thermal conversion;Bai;J. Energy Storage,2023
2. Spatiotemporal phase change materials for thermal energy long-term storage and controllable release;Li;J. Energy Storage,2023
3. Preparation of alumina/silica/exfoliated graphite nanoplatelets composite aerogels and its application as supporting material for erythritol based form-stable phase change materials;Ning;Chem. Eng. J.,2023
4. Excellent heat transfer and phase transformation performance of erythritol/graphene composite phase change materials;Yan;Compos. Pt. B Eng.,2022
5. Thermal conductivity and phase change characteristics of hierarchical porous diamond/erythritol composite phase change materials;Yan;Energy,2021
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