Abstract
The synthesis of dimethylzinc (Me2Zn) and diethylzinc (Et2Zn) by Frankland in the mid-nineteenth century marks a cornerstone in the history of chemistry.1 Not only were they among the first organometallic compounds, but studies on their chemical reactions and vapor densities led to the first clear exposition of valency theory.2 Since then both compounds have found widespread applications: They are important reagents in organic synthesis,3 for example in the enantioselective alkylation of carbonyls4 and imines5 and in cyclopropanation reactions.6 Their high vapor pressures have led to extensive uses in metalorganic chemical vapor deposition (MOCVD) for the preparation of wide band gap II–VI semiconducting films (e.g. ZnS, ZnSe, ZnTe),7 ZnO nanostructures, and as p-dopant precursors for III–V semiconductors (e.g. GaAs, InP, AlxGa1−xAs), which have numerous electronic and photonic applications.8
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