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We develop a kirigami-inspired elastomer containing plasmonic vanadium dioxide (VO2) nanoparticles, in which the geometrical transition and the temperature-dependent localized surface plasmon resonance (LSPR) present dominant controls in ultraviolet-visible and near-infrared regions, respectively. The active LSPR control, via stretch-induced local dielectric changes is mitigated on reconfigurable metamaterials because of their unique strain distributions. This method demonstrated a desirable property in energy-efficient smart windows facilitating improved solar energy modulation (37.7%), surpassing the best-reported modulation in passive and transparent VO2 thermochromism systems. This first attempt to integrate the plasmonics and reconfigurable structures may inspire developments in smart windows, building energy economization, aswell as fundamental studies of plasmonic controls in metastructures."},"publication":[{"publicationCitation":"Ke, Y., Yin, Y., Zhang, Q., Tan, Y., Hu, P., Wang, S., . . . Long, Y. (2019). Adaptive Thermochromic Windows from Active Plasmonic Elastomers. Joule, 3(3), 858-871.","publicationIDType":"doi","publicationIDNumber":"10.1016/j.joule.2018.12.024","publicationURL":"https://linkinghub.elsevier.com/retrieve/pii/S2542435118306305"},{"publicationCitation":"Ke, Y., Yin, Y., Zhang, Q., Tan, Y., Hu, P., Wang, S., Tang, Y., Zhou, Y., Wen, X., Wu, S., White, T. J., Yin, J., Peng, J., Xiong, Q., Zhao, D. & Long, Y. (2019). Adaptive thermochromic windows from active plasmonic elastomers. 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