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Updated: Jan 11, 2026

Metal-free Synthesis of Ynones from Acyl Chlorides and Potassium Alkynyltrifluoroborate Salts
Published on: February 24, 2015
Two Roads to Arylstannanes: Arynes and Stannylpotassiums
1Graduate School of Advanced Science and Technology, Hiroshima University, Higashi-Hiroshima, Japan.
Abstract:
Arylstannanes are versatile organometallic reagents, and efficient methods for synthesizing them remain in demand. We report two approaches that expand this chemistry. First, aryne insertion reactions into Sn-F, Sn-CN, Sn-alkynyl, and Sn-aryl bonds furnish fluoro-, cyano-, alkynyl-, and aryl-substituted arylstannanes with high regioselectivity and broad functional group tolerance. Mechanistic studies reveal a decisive role of fluoride in activating organostannanes and promoting Cu-assisted transmetalation. Second, we introduce a convenient protocol for generating stannylpotassium species from silylstannanes and t-BuOK. The stannylpotassium reagents, featuring fully ionic Sn-K bonds, exhibit superior nucleophilicity and smoothly convert diverse aryl halides, including sterically hindered and heteroaryl substrates, into arylstannanes at room temperature under transition metal-free conditions. Together, these aryne- and stannylpotassium-based strategies provide operationally simple and general routes to diverse arylstannanes of high synthetic utility.
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