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- W3105318417 abstract "The iceberg theme represents how H. V. R. Dias, M. G. Cowan et al. utilize solution chemistry in a solid-state reaction for the separation of alkenes and alkanes, leading to potentially major effects on reducing global energy use and global warming. In situ PXRD was used in their Research Article on page 21001 to watch the reversible trimer to dimer rearrangement in the solid state, where multiple bonds are broken and reformed. The rapid uptake and release and minimal heat of adsorption of alkene, and the reusability of these materials, make the process a sustainable alternative for distillation methods. The iceberg theme represents how H. V. R. Dias, M. G. Cowan et al. utilize solution chemistry in a solid-state reaction for the separation of alkenes and alkanes, leading to potentially major effects on reducing global energy use and global warming. In situ PXRD was used in their Research Article on page 21001 to watch the reversible trimer to dimer rearrangement in the solid state, where multiple bonds are broken and reformed. The rapid uptake and release and minimal heat of adsorption of alkene, and the reusability of these materials, make the process a sustainable alternative for distillation methods. Asymmetric Synthesis Photophysics Singlet Fission Liquid Crystals" @default.
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- W3105318417 date "2020-09-29" @default.
- W3105318417 modified "2023-10-18" @default.
- W3105318417 title "Cover Picture: Overcoming Fundamental Limitations in Adsorbent Design: Alkene Adsorption by Non‐porous Copper(I) Complexes (Angew. Chem. Int. Ed. 47/2020)" @default.
- W3105318417 doi "https://doi.org/10.1002/anie.202012542" @default.
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