4.7 Article

Determining the Three-Dimensional Structures of Silica-Supported Metal Complexes from the Ground Up

Journal

INORGANIC CHEMISTRY
Volume 61, Issue 2, Pages 1067-1078

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acs.inorgchem.1c03200

Keywords

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Funding

  1. U.S. Department of Energy (DOE), Office of Basic Energy Sciences (BES), Division of Chemical Sciences, Geosciences, and Biosciences (CSGB), as a part of the Ames Laboratory catalysis program
  2. Institute for Cooperative Upcycling of Plastics (iCOUP), an Energy Frontier Research Center - DOE, BES
  3. DOE Early Career Project
  4. DOE [DE-AC02-07CH11358]

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The immobilization of molecularly precise metal complexes on substrates, such as silica, provides a platform for designing active sites in heterogeneous catalysts. NMR-based surface-to-complex interatomic distances can be used to solve the three-dimensional structures of metal complexes on silica, revealing unexpected features. This approach is robust and easily applicable to most single-site catalysts with little extra effort.
The immobilization of molecularly precise metal complexes to substrates, such as silica, provides an attractive platform for the design of active sites in heterogeneous catalysts. Specific steric and electronic variations of the ligand environment enable the development of structure-activity relationships and the knowledge-driven design of catalysts. At present, however, the three-dimensional environment of the precatalyst, much less the active site, is generally not known for heterogeneous single-site catalysts. We explored the degree to which NMR-based surface-to-complex interatomic distances could be used to solve the three-dimensional structures of three silica-supported metal complexes. The structure solution revealed unexpected features related to the environment around the metal that would be difficult to discern otherwise. This approach appears to be highly robust and, due to its simplicity, is readily applied to most single-site catalysts with little extra effort.

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