Experimental Investigation of Thermodynamic Stabilization in Boron Imidazolate Frameworks (BIFs) Synthesized by Mechanochemistry

Gerson J. Leonel, Cameron B. Lennox, Manuel Scharrer, K. Jayanthi, Tomislav Friščic, Alexandra Navrotsky

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2 Scopus citations

Abstract

This study experimentally explores the energetics for the formation of boron-imidazolate frameworks (BIFs), which are synthesized by mechanochemistry. The topologically similar frameworks employ the same tetratopic linker based on tetrakis(imidazolyl)boric acid but differ in the monovalent cation metal nodes. This permits assessment of the stabilizing effect of metal nodes in frameworks with sodalite (SOD) and diamondoid (dia) topologies. The enthalpy of formation from endmembers (metal oxide and linker), which define thermodynamic stability of the structures, has been determined by use of acid solution calorimetry. The results show that heavier metal atoms in the node promote greater energetic stabilization of denser structures. Overall, in BIFs the relation between cation descriptors (ionic radius and electronegativity) and thermodynamic stability depends on framework topology. Thermodynamic stability increases with the metallic character of the cation employed as the metal node, independent of the framework topology. The results suggest unifying aspects for thermodynamic stabilization across MOF systems.

Original languageEnglish
Pages (from-to)17754-17760
Number of pages7
JournalJournal of Physical Chemistry C
Volume127
Issue number36
DOIs
StatePublished - Sep 14 2023

Funding

A.N. and G.J.L. acknowledge financial support from National Science Foundation (NSF) Partnerships for International Research and Education (PIRE) grant #1743701. T.F. and C.B.L. are thankful for the support of the NSERC Discovery Grant (RGPIN-2017-06467); NSERC John C. Polanyi Award (JCP 562908-2022); Tier-1 Canada Research Chair Program (T.F.); NSERC CGS-D Scholarship (C.B.L.); Leverhulme International Professorship (T.F.) and the University of Birmingham.

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