Author:
Mohammed Abdul Khayum,Gaber Safa,Raya Jésus,Skorjanc Tina,Elmerhi Nada,Stephen Sasi,Sánchez Pilar Pena,Gándara Felipe,Hinder Steven J.,Baker Mark A.,Polychronopoulou Kyriaki,Shetty Dinesh
Abstract
AbstractThe ordered porous frameworks like MOFs and COFs are generally constructed using the monomers through distinctive metal-coordinated and covalent linkages. Meanwhile, the inter-structural transition between each class of these porous materials is an under-explored research area. However, such altered frameworks are expected to have exciting features compared to their pristine versions. Herein, we have demonstrated a chemical-induction phase-engineering strategy to transform a two-dimensional conjugated Cu-based SA-MOF (Cu-Tp) into 2D-COFs (Cu-TpCOFs). The structural phase transition offered in-situ pore size engineering from 1.1 nm to 1.5–2.0 nm. Moreover, the Cu-TpCOFs showed uniform and low percentage-doped (~ 1–1.5%) metal distribution and improved crystallinity, porosity, and stability compared to the parent Cu-Tp MOF. The construction of a framework from another framework with new linkages opens interesting opportunities for phase-engineering.
Funder
Khalifa University of Science, Technology and Research
Publisher
Springer Science and Business Media LLC
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