Dynamic interplay between defective UiO-66 and protic solvents in activated processes
| Authors |
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| Publication date | 02-12-2019 |
| Journal | Chemistry - A European Journal |
| Volume | Issue number | 25 | 67 |
| Pages (from-to) | 15315—15325 |
| Number of pages | 11 |
| Organisations |
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| Abstract |
UiO-66, composed by Zr-oxide inorganic bricks [Zr6(μ3-O)4(μ3-OH)4]
and organic terephthalate linkers, is one of the most studied
metal–organic frameworks (MOFs) due to its exceptional thermal,
chemical, and mechanical stability. Thanks to its high connectivity, the
material can withstand structural deformations during activation
processes such as linker exchange, dehydration, and defect formation.
These processes do alter the zirconium coordination number in a dynamic
way, creating open metal sites for catalysis and thus are able to tune
the catalytic properties. In this work, it is shown, by means of
first-principle molecular-dynamics simulations at operating conditions,
how protic solvents may facilitate such changes in the metal
coordination. Solvent can induce structural rearrangements in the
material that can lead to undercoordinated but also overcoordinated
metal sites. This is demonstrated by simulating activation processes
along well-chosen collective variables. Such enhanced MD simulations are
able to track the intrinsic dynamics of the framework at realistic
conditions.
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| Document type | Article |
| Note | With supplementary files. |
| Language | English |
| Published at | https://doi.org/10.1002/chem.201903178 |
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