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This work establishes a new paradigm in the manipulation of (metal-organic) van der Waals crystals, where molecular alloying can drive complete and temperature-tunable
This work establishes a new paradigm in the manipulation of (metal-organic) van der Waals crystals, where molecular alloying can drive complete and temperature-tunable
By leveraging molecular alloying, we've discovered a novel mechanism to control valence changes in a layered metal-organic material. Specifically, by alloying aliovalent Cr(pyrazine)I2 and Cr(pyrazine)2Br2, we can switch between Cr(II) and Cr(III) states thermally,
By leveraging molecular alloying, we've discovered a novel mechanism to control valence changes in a layered metal-organic material. Specifically, by alloying aliovalent Cr(pyrazine)I2 and Cr(pyrazine)2Br2, we can switch between Cr(II) and Cr(III) states thermally,
🏛 DTU Chemistry, DTU Energy, ESRF - The European Synchrotron, Jagiellonian University
💰 Villum Fonden, Independent Research Fund Denmark
🏛 DTU Chemistry, DTU Energy, ESRF - The European Synchrotron, Jagiellonian University
💰 Villum Fonden, Independent Research Fund Denmark