Submit to this Special Topic today | | Call for PapersSpecial Topic: Multicalorics II | Multicalorics combines magnetocaloric, electrocaloric, and mechanocaloric effects, and induces thermal changes driven simultaneously or sequentially by external stimulus. Multicaloric materials and devices are promising candidates for solid-state cooling technologies that are energy efficient and environmentally friendly.
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This Special Topic will provide scientists and engineers a common forum for sharing important advances in the synthesis, characterization, and application of multicaloric materials, together with theory, computational methods, and experimental methods. This will not only contribute to the current understanding of the relevant phenomena and their practical application and implementation, but also stimulate future research and cross-fertilization. | Topics covered include, but are not limited to: | | | Synthesis and characterization of multicaloric materials and devices | | | | Theory, computational methods, and experimental methods for characterization and understanding multicaloric (magnetocaloric, electrocaloric, elastocaloric, barocaloric) effects | | | | | Thermodynamics of multicaloric effects and physics in multicaloric cooling | | | | Composites for multiferroics, multicalorics, magnetoelectrics, etc. | | | | Applications of multicaloric materials and devices | | | | Structuring, shaping, and designs of multicalorics | | | | Prof. Jochen Wosnitza, Helmholtz-Zentrum Dresden-Rossendorf |
Dr. Julie Slaughter, Ames National Laboratory |
Prof. Qiming Zhang, The Pennsylvania State University |
Prof. Huilong Hou, Beihang University | | | Submission Deadline: July 31, 2024 | | | | | | | | Follow us on social media | |
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