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March 26, 2026Nature Communications16 citationsOpen Access

Microporous MOF for simultaneous high thermodynamic and kinetic synergistic separation of propylene and propane

XWXue WangLBLingxiang BaoJLJing-Hong Li

Key Points

  • This research aims to develop a molecular sieve that optimally separates propylene from propane by enhancing thermodynamic and kinetic properties.
  • Development of ZSTU-10 using structure-directing agents
  • Assessment of static adsorption for propylene uptake
  • Evaluation of time-dependent uptake kinetics for diffusion coefficients
  • Execution of dynamic breakthrough experiments to measure purity and productivity
  • Achieved exceptional propylene uptake of 97.7 cm³/cm³ at 298 K and 1 bar
  • Measured propylene diffusion coefficient of 4.29 × 10⁻⁹ cm²/s, surpassing benchmarks
  • Produced high-purity propylene of 99.1% with productivity of 37.5 L/kg in a single cycle

Abstract

Efficient separation of propylene from propane is a critical yet challenging industrial process. While rigid molecular sieves offer ideal selectivity, their narrow nanopores inherently constrain adsorption capacity and diffusion kinetics due to compromised thermodynamic-kinetic trade-offs. To address this, we report ZSTU-10, a molecular sieve constructed via structure-directing agents. Uniquely, ZSTU-10 features localized sieving gates for selective guest admission, expansive diffusion channels for rapid transport, and central pore cavities for high-capacity storage. This gate-channel-cavity architecture enables the precise exclusion of propane while facilitating the dense packing and fast diffusion of propylene, achieving simultaneous thermodynamic-kinetics optimization in molecular sieving. Static adsorption experiments demonstrate an exceptional propylene uptake (97.7 cm3 cm-3) at 298 K and 1 bar. Time-dependent uptake kinetics revealed a propylene diffusion coefficient (4.29 × 10-9 cm2 s-1) in ZSTU-10 surpassing benchmarks by two orders of magnitude. Dynamic breakthrough experiments demonstrate that ZSTU-10 produces high-purity propylene (99.1%) with a productivity of 37.5 L kg-1 in a single adsorption-desorption cycle.

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Cite This Study

Wang et al. (2026) studied this question.

synapsesocial.com/papers/69c4cc02fdc3bde44891765ehttps://doi.org/10.1038/s41467-026-71104-9
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