2005•Chemistry LettersRequires access

Nonphotochemical Synthesis of a Base-free Silyl(silylene)iron Complex and Its Reaction with CO: Another Direct Evidence for Reversible 1,2- and 1,3-Group Migrations

Hisako Hashimoto, Akihisa Matsuda, Hiromi Tobita

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Abstract

Abstract A base-free silyl(silylene)iron complex 1, which had been originally synthesized by a photochemical method, was prepared in higher yield by a newly developed thermal method. Reaction of this silyl(silylene)iron complex 1 with CO at 80 °C cleanly produced a mixture of two isomeric disilanyliron complexes 6 and 6′ via 1,3-group migrations followed by 1,2-silyl migration. Oppositely, each of disilanyl complexes 6 and 6′ reproduced the silyl(silylene)iron complex 1 with a release of CO almost quantitatively at room temperature by irradiation with a fluorescent lamp.

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Abstract A base-free silyl(silylene)iron complex 1, which had been originally synthesized by a photochemical method, was prepared in higher yield by a newly developed thermal method. Reaction of this silyl(silylene)iron complex 1 with CO at 80 °C cleanly produced a mixture of two isomeric disilanyliron complexes 6 and 6′ via 1,3-group migrations followed by 1,2-silyl migration. Oppositely, each of disilanyl complexes 6 and 6′ reproduced the silyl(silylene)iron complex 1 with a release of CO almost quantitatively at room temperature by irradiation with a fluorescent lamp.

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Available abstract

Abstract A base-free silyl(silylene)iron complex 1, which had been originally synthesized by a photochemical method, was prepared in higher yield by a newly developed thermal method. Reaction of this silyl(silylene)iron complex 1 with CO at 80 °C cleanly produced a mixture of two isomeric disilanyliron complexes 6 and 6′ via 1,3-group migrations followed by 1,2-silyl migration. Oppositely, each of disilanyl complexes 6 and 6′ reproduced the silyl(silylene)iron complex 1 with a release of CO almost quantitatively at room temperature by irradiation with a fluorescent lamp.

Key concepts: Silylene, Silylation, Chemistry, Base (topology), Yield (engineering), Photochemistry, Medicinal chemistry, Organic chemistry

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Nonphotochemical Synthesis of a Base-free Silyl(silylene)iron Complex and Its Reaction with CO: Another Direct Evidence for Reversible 1,2- and 1,3-Group Migrations — Research Paper | ScholarLens