Exploiting Reaction-Diffusion Conditions to Trigger Pathway Complexity in the Growth of a MOF

  • Calvo Galve, Néstor
  • Abrishamkar, Afshin
  • Sorrenti, Alessandro
  • Di Rienzo, Lorenzo
  • Satta, Mauro
  • D'Abramo, Marco
  • Coronado, Eugenio
  • deMello, Andrew
  • Mínguez Espallargas, Guillermo
  • Puigmartí-Luis, Josep
Publication date
July 2021
Publisher
Wiley

Abstract

Coordination polymers (CPs), including metal–organic frameworks (MOFs), are crystalline materials with promising applications in electronics, magnetism, catalysis, and gas storage/separation. However, the mechanisms and pathways underlying their formation remain largely undisclosed. Herein, we demonstrate that diffusion-controlled mixing of reagents at the very early stages of the crystallization process (i.e., within ≈40 ms), achieved by using continuous-flow microfluidic devices, can be used to enable novel crystallization pathways of a prototypical spin-crossover MOF towards its thermodynamic product. In particular, two distinct and unprecedented nucleation-growth pathways were experimentally observed when crystallization was triggered u...

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