4.6 Article

Bidentate Disilicate Framework for Bis-Grafted Surface Species

期刊

CHEMISTRY-A EUROPEAN JOURNAL
卷 27, 期 47, 页码 12069-12077

出版社

WILEY-V C H VERLAG GMBH
DOI: 10.1002/chem.202101927

关键词

bis-grafted surface species; disilicate ligands; grafting on silicon atoms; six-membered rings; surface organometallic chemistry

资金

  1. New Energy and Industrial Technology Development Organization (NEDO) [JPNP16010]

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Recent advancements in surface organometallic chemistry have allowed for detailed characterization of surface species in single-site heterogeneous catalysts. This study introduces a metal complex with bidentate disilicate ligands as a molecular precursor for selectively forming bis-grafted surface species on silica supports. Solid-state NMR analysis confirmed the maintenance of the bidentate coordination sphere following grafting.
Recent advances in surface organometallic chemistry have enabled the detailed characterization of the surface species in single-site heterogeneous catalysts. However, the selective formation of bis-grafted surface species remains challenging because of the heterogeneity of the supporting surface. Herein, we introduce a metal complex bearing bidentate disilicate ligands, -OSi((OBu)-Bu-t)(2)OSi((OBu)-Bu-t)(2)O-, as a molecular precursor, which has a silicate framework adjacent to the metal (Pt) center. The grafting of the precursors on silica supports (MCM-41 and CARiACT Q10) proceeded through a substitution reaction on the silicon atoms of the disilicate ligand, which was verified by the detection of isobutene and (BuOH)-Bu-t as the elimination products, to selectively yield bis-grafted surface species. The chemical structure of the surface species was characterized by solid-state NMR, and the chemical shift values of the ancillary ligands and Pt-195 nuclei suggested that the bidentate coordination sphere was maintained following grafting.

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