Covalent Heterogenization of a Discrete Mn(II) Bis-Phen
Complex by a Metal-Template/Metal-Exchange Method: An
Epoxidation Catalyst with Enhanced Reactivity
Posted on 2008-04-09 - 00:00
Considerable attention has been devoted to the immobilization of discrete epoxidation catalysts
onto solid supports due to the possible benefits of site isolation such as increased catalyst stability, catalyst
recycling, and product separation. A synthetic metal-template/metal-exchange method to imprint a covalently
attached bis-1,10-phenanthroline coordination environment onto high-surface area, mesoporous SBA-15
silica is reported herein along with the epoxidation reactivity once reloaded with manganese. Comparisons
of this imprinted material with material synthesized by random grafting of the ligand show that the template
method creates more reproducible, solution-like bis-1,10-phenanthroline coordination at a variety of ligand
loadings. Olefin epoxidation with peracetic acid shows the imprinted manganese catalysts have improved
product selectivity for epoxides, greater substrate scope, more efficient use of oxidant, and higher reactivity
than their homogeneous or grafted analogues independent of ligand loading. The randomly grafted
manganese catalysts, however, show reactivity that varies with ligand loading while the homogeneous
analogue degrades trisubstituted olefins and produces trans-epoxide products from cis-olefins. Efficient
recycling behavior of the templated catalysts is also possible.
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Terry, Tracy J.; Daniel P. Stack, T. (2016). Covalent Heterogenization of a Discrete Mn(II) Bis-Phen
Complex by a Metal-Template/Metal-Exchange Method: An
Epoxidation Catalyst with Enhanced Reactivity. ACS Publications. Collection. https://doi.org/10.1021/ja0742030