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How glycine can be prepared by strecker synthesis?
How glycine can be prepared by strecker synthesis?
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In situ ATR-FTIR spectroscopy characterizations reveal a favorable tandem pathway on the dual-site catalyst. Specifically, the Pb site drives the highly selective electroreduction of H2C2O4 to form glyoxylic acid, and the Cu site accelerates the fast hydrogenation of oxime to form a glycine product.
Glycine has only two C’s ; in Strecker synthesis one of which is supplied by CN− so the second must be supplied by an aldehyde having one C only i.e. HCHO or its precursor CH3OH(CH3OH→HCHO).