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MOFs as biomedical microrobots By applying concepts developed in micro- and nanorobotics, scientists have shown the controlled motion and delivery of cargo payloads embedded in MOFs. These helical MOF-based micromachines, called MOFBOTs, are moved by artificial bacterial flagella, can swim and follow complex trajectories in 3 measurements under the control of weak rotational magnetic fields.

And the small nanostructure of the MOF and its greater sorption rate implies the cooling systems can be made much smaller and, therefore, more effective and economically feasible. MOFs, sometimes aesthetically compared to the classic Tinkertoy wood play building kits, are comprised of metal ions clusters linked by natural linker molecules or bridging-ligands whose geometry and connection determine the structure of the MOFs.
Removing heavy metals from water with MOFs Researchers dealt with a MOF, known as Fe-BTC, with dopamine, which polymerized to polydopamine (PDA) pinning the polymer inside the MOF. The last composite, named Fe-BTC/PDA, can rapidly and selectively get rid of high amounts of heavy metals like lead and mercury from water samples. In reality, it can get rid of over 1.
4 times of its weight of lead. Fe-BTC/PDA was then tested in options as hazardous as some of the worst water samples discovered in Flint, Michigan. The tests showed that the MOF can, immediately, reduce lead concentrations to 2 parts per billion, a level that the U.S.
MOFs to catch nuclear waste At nuclear reactor and tradition waste sites, an especially difficult-to-capture hazard is radioactive organic iodides. These compounds are made of hydrocarbons and iodine. By chemically modifying MOFs with binding websites that have reactive nitrogen that can bind to natural iodides, scientists have built MOF traps that show a high methyl iodide capacity over 3 times greater than the currently used commercial adsorbent under identical conditions.


Furthermore, the MOF adsorbent can be recycled numerous times without loss of capacity, unlike other known commercial absorbents. MOF Vaccines MOF vaccines are based upon a biocompatible polymer structure that 'freezes' proteins inside vaccines. The proteins then liquify when injected in human skin. Also Found Here might help healthcare service providers transport and administer vaccines in remote areas with undependable power.