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Liquid–vapor phase change including evaporation, boiling, and condensation is a ubiquitous process found in power generation, desalination, thermal management, building heating and cooling, and additive manufacturing. The dynamics of droplets and bubbles during phase change including nucleation, growth, and departure critically influence the thermal transport performance and system efficiency. This review will highlight recent advancements using static and dynamic strategies to manipulate droplets and bubbles for phase change applications and beyond.more » « less
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Ouyang, Wenkai; Lygo, Alexander_C; Chen, Yubi; Zheng, Huiyuan; Vu, Dung; Wooten, Brandi_L; Liang, Xichen; Heremans, Joseph_P; Stemmer, Susanne; Liao, Bolin (, Advanced Materials)Abstract Topological insulators and semimetals have been shown to possess intriguing thermoelectric properties promising for energy harvesting and cooling applications. However, thermoelectric transport associated with the Fermi arc topological surface states on topological Dirac semimetals remains less explored. This work systematically examines thermoelectric transport in a series of topological Dirac semimetal Cd3As2thin films grown by molecular beam epitaxy. Surprisingly, significantly enhanced Seebeck effect and anomalous Nernst effect are found at cryogenic temperatures when the Cd3As2layer is thin. In particular, a peak Seebeck coefficient of nearly 500 µV K−1and a corresponding thermoelectric power factor over 30 mW K−2 m−1are observed at 5 K in a 25‐nm‐thick sample. Combining angle‐dependent quantum oscillation analysis, magnetothermoelectric measurement, transport modeling, and first‐principles simulation, the contributions from bulk and surface conducting channels are isolated and the unusual thermoelectric properties are attributed to the topological surface states. The analysis showcases the rich thermoelectric transport physics in quantum‐confined topological Dirac semimetal thin films and suggests new routes to achieving high thermoelectric performance at cryogenic temperatures.more » « less
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Liang, Xichen; Karnaukh, Kseniia M.; Zhao, Lei; Seshadri, Serena; DuBose, Austin J.; Bailey, Sophia J.; Cao, Qixuan; Cooper, Marielle; Xu, Hao; Haggmark, Michael; et al (, ACS Central Science)
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Zhao, Lei; Seshadri, Serena; Liang, Xichen; Bailey, Sophia J.; Haggmark, Michael; Gordon, Michael; Helgeson, Matthew E.; Read de Alaniz, Javier; Luzzatto-Fegiz, Paolo; Zhu, Yangying (, ACS Central Science)
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