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March 3, 2026The Journal of Physical Chemistry C0 citations

Unlocking Thermal Flexibility in Ni-Based Fluorinated Square-Pillared MOFs: Insights into Pore Transitions and Node-Linker Dynamics

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SPSilda PetersRPRenjith S. PillaiTSTumpa Sadhukhan

Key Points

  • The transformation from large-pore to narrow-pore states is driven by linker tilting and node-linker dynamics.
  • Linker chemistry finely tunes the magnitude and onset of thermal transitions across the frameworks analyzed.
  • Molecular simulations were utilized to examine structural evolution across varying linkers of rigidity and length.
  • Understanding the mechanisms behind thermal responsiveness opens avenues for designing adaptable materials with specific applications.

Abstract

The thermally responsive behavior of metal–organic frameworks offer a pathway to materials capable of adapting their internal architecture to external stimuli. In this study, we elucidate how fluorinated AlF5 pillars, together with linker-dependent internal motions, govern the distinctive thermoresponsive behavior of ALFFIVE-Ni frameworks. Using molecular simulations, we examine the temperature-induced structural evolution across three linkers of increasing rigidity and length and show that linker tilting, mediated through node–linker dynamics, drives the transformation from large-pore (lp) to narrow-pore (np) states. The magnitude and onset of this transition are finely tuned by linker chemistry, while all systems display pronounced negative thermal expansion arising from coordinated internal vibrations. Water interactions further modulate this response by stabilizing the framework under humid conditions and partially suppressing thermal contraction. By clarifying the microscopic mechanisms underlying flexibility in fluorinated MOFs, this work provides a foundation for designing thermally adaptive materials with tailored pore behavior, structural responsiveness, and application-specific performance.

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Cite This Study

Peters et al. (2026) studied this question.

synapsesocial.com/papers/69a7658fbadf0bb9e87d98dchttps://doi.org/10.1021/acs.jpcc.5c07920
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