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Studies on Green Synthetic Reactions Based on Formic Acid from Biomass (Hardcover, 1st ed. 2020): Ming-Chen Fu Studies on Green Synthetic Reactions Based on Formic Acid from Biomass (Hardcover, 1st ed. 2020)
Ming-Chen Fu
R2,789 Discovery Miles 27 890 Ships in 10 - 15 working days

This book introduces readers to the use of formic acid for efficient organic synthesis. It describes the N-methylation of aromatic and aliphatic amines with formic acid using a boron-based catalyst [B(C6F5)3] in combination with silanes and without the need for an expensive transition metal catalyst. It also shows that formic acid interacts with alkynes and allyl alcohols through a carbonylation process that generates carbon monoxide in situ from nickel and palladium catalysis, respectively, doing away with the need to use high-pressure CO gas and offering a user-friendly and practical method for preparing functionalized , - and , -unsaturated carboxylic acids. The findings presented not only enrich the field of 'C1 chemistry,' but also support the advancement of green and sustainable chemistry.

Studies on Green Synthetic Reactions Based on Formic Acid from Biomass (Paperback, 1st ed. 2020): Ming-Chen Fu Studies on Green Synthetic Reactions Based on Formic Acid from Biomass (Paperback, 1st ed. 2020)
Ming-Chen Fu
R2,738 Discovery Miles 27 380 Ships in 10 - 15 working days

This book introduces readers to the use of formic acid for efficient organic synthesis. It describes the N-methylation of aromatic and aliphatic amines with formic acid using a boron-based catalyst [B(C6F5)3] in combination with silanes and without the need for an expensive transition metal catalyst. It also shows that formic acid interacts with alkynes and allyl alcohols through a carbonylation process that generates carbon monoxide in situ from nickel and palladium catalysis, respectively, doing away with the need to use high-pressure CO gas and offering a user-friendly and practical method for preparing functionalized , - and , -unsaturated carboxylic acids. The findings presented not only enrich the field of 'C1 chemistry,' but also support the advancement of green and sustainable chemistry.

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