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cc-by-nc (c) Contreras-Pereda, Noemí et al., 2021
Si us plau utilitzeu sempre aquest identificador per citar o enllaçar aquest document: https://hdl.handle.net/2445/230100

Synthesis of 2D porous crystalline materials in simulated microgravity

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To date, crystallization studies conducted in space laboratories, which are prohibitively costly and unsuitable to most research laboratories, have shown the valuable effects of microgravity during crystal growth and morphogenesis. Herein, an easy and highly efficient method is shown to achieve space-like experimentation conditions on Earth employing custom-made microfluidic devices to fabricate 2D porous crystalline molecular frameworks. It is confirmed that experimentation under these simulated microgravity conditions has unprecedented effects on the orientation, compactness and crack-free generation of 2D porous crystalline molecular frameworks as well as in their integration and crystal morphogenesis. It is believed that this work will provide a new 'playground' to chemists, physicists, and materials scientists that desire to process unprecedented 2D functional materials and devices.

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CONTRERAS-PEREDA, Noemí, et al. Synthesis of 2D porous crystalline materials in simulated microgravity. Advanced Materials. 2021. Vol. 33, num. 30, pags. 2101777. ISSN 0935-9648. [consulted: 28 of June of 2026]. Available at: https://hdl.handle.net/2445/230100

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