4.8 Article

Selective Photodimerization in a Cyclodextrin Metal-Organic Framework

Journal

JOURNAL OF THE AMERICAN CHEMICAL SOCIETY
Volume 143, Issue 24, Pages 9129-9139

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/jacs.1c03277

Keywords

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Funding

  1. Northwestern University
  2. Anhui University
  3. U.S. Department of Energy, Office of Basic Energy Sciences [DE-FG02-08ER15967]
  4. Center for Bio-Inspired Energy Science (CBES), an Energy Frontier Research Center - U.S. Department of Energy, Office of Basic Energy Sciences [DE-SC0000989]
  5. NIH [1S10OD012016-01/1S10RR019071-01A1]
  6. Soft and Hybrid Nanotechnology Experimental (SHyNE) Resource [NSF ECCS-1542205]
  7. State of Illinois
  8. International Institute for Nanotechnology (IIN)

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The article discusses the successful incorporation of 1-anthracenecarboxylate as a substrate into a gamma-cyclodextrin-containing metal-organic framework for performing highly regio- and enantioselective [4+4] cycloaddition reactions during photoirradiation. Non-covalent bonding interactions lead to preferred co-conformations within the molecular tunnels, contributing to the reaction's selectivity. Theoretical calculations and crystallography support the regio- and stereochemical outcome of the photodimerization process.
For the most part, enzymes contain one active site wherein they catalyze in a serial manner chemical reactions between substrates both efficiently and rapidly. Imagine if a situation could be created within a chiral porous crystal containing trillions of active sites where substrates can reside in vast numbers before being converted in parallel into products. Here, we report how it is possible to incorporate 1-anthracenecarboxylate (1-AC(-)) as a substrate into a gamma-cyclodextrincontaining metal-organic framework (CD-MOF-1), where the metals are K+ cations, prior to carrying out [4+4] photodimerizations between pairs of substrate molecules, affording selectively one of four possible regioisomers. One of the high-yielding regioisomers exhibits optical activity as a result of the presence of an 8:1 ratio of the two enantiomers following separation by high-performance liquid chromatography. The solid-state superstructure of 1-anthracenecarboxylate potassium salt (1-ACK), which is co-crystallized with gamma-cyclodextrin, reveals that pairs of substrate molecules are not only packed inside tunnels between spherical cavities present in CD-MOF-1, but also stabilized.in addition to hydrogen-bonding to the C-2 and C-3 hydroxyl groups on the D-glucopyranosyl residues present in the gamma-cyclodextrin tori.by combinations of hydrophobic and electrostatic interactions between the carboxyl groups in 1-AC- and four K+ cations on the waistline between the two gamma-cyclodextrin tori in the tunnels. These non-covalent bonding interactions result in preferred co-conformations that account for the highly regio- and enantioselective [4+4] cycloaddition during photoirradiation. Theoretical calculations, in conjunction with crystallography, support the regio- and stereochemical outcome of the photodimerization.

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