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مریم اکبری

مریم اکبری

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مقطع تحصیلی: دکترای تخصصی

مریم اکبری

استادیار مریم اکبری

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مقطع تحصیلی: دکترای تخصصی |

Direct and efficient Fischer–Tropsch synthesis on a defect-engineered cobalt-incorporated zirconium metal–organic framework

نویسندگانPoodine M., Mirzaei A.A., Oveisi A.R., Mollashahi E., Akbari M.
نشریهRSC Advances
كد DOI/DOR10.1039/d6ra00113k
تاریخ انتشار۲۰۲۶

چکیده مقاله

A defective metal–organic framework (MOF), UiO-66, was synthesized and functionalized with cobalt cations anchored directly to its Zr-oxo nodes. The resulting material, Co@DUiO-66, acts as a highly active catalyst for Fischer–Tropsch (FT) synthesis without requiring a pyrolysis step. In contrast to the standard practice of using pyrolyzed MOF derivatives, this work demonstrates the direct use of a metallated MOF for this reaction. Detailed characterization (TGA, DSC, FT-IR, EDX, elemental mapping, FESEM, XRD, ICP-OES, ICP-MS, CHN, TEM, and BET) confirms that the porosity is maintained and that cobalt remains uniformly dispersed at the atomic level. Under industrial conditions (220 °C, 20 bar, GHSV of 2400 mL gcat−1 h−1), the catalyst achieved a high CO conversion of 82.67%, comparable to other cobalt-MOF derivatives. This high activity results from the unique, site-isolated Co2+ centers and the preserved, high-surface-area framework, which together improve catalyst stability and longevity during FT reactions. The direct-use approach removes the energy-heavy pyrolysis step, simplifying production and offering significant economic and industrial benefits. This research introduces a new strategy for designing efficient, site-specific, non-pyrolyzed MOF catalysts for important processes like FT synthesis. This journal is © The Royal Society of Chemistry, 2026.

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