[Paper Solved]Which functional group are you targeting with your chosen reaction? –

The functional group that is being targeted with my chosen reaction is the carboncarbon double bond. This type of reaction involves breaking a carboncarbon double bond and forming two new single bonds in its place. This process can be carried out by a variety of different methods, including using catalysts, heat or light energy to initiate the reaction. It is also possible to use enzymes or other biological molecules as catalysts for this type of reaction.

Which functional group are you targeting with your chosen reaction?

In my chosen reaction, I am utilizing a catalyst to break down the double bond and form two new single bonds in its place. The most common catalyst used for this purpose is a Lewis acid such as boron trifluoride (BF3). BF3 works by protonating the carbon atoms on either side of the double bond, making them more susceptible to attack from nucleophiles like protons and alkoxides. These nucleophiles react with each carbon atom at the same time, thus breaking apart the original C=C bond and forming two new C–H or C–OR bonds instead.

This process can then be reversed if desired by adding anhydrous hydrogen fluoride (HF) which acts as a strong base that eliminates any residual acidity from the reaction mixture. The HF will protonate both newly formed single bonds simultaneously, restoring them into one C=C double bond once again. Other reagents such as dimethylformamide (DMF) may also be used in conjunction with BF3 in order to increase its effectiveness and reduce the likelihood of unwanted side reactions occurring during catalysis.

Using BF3 as a catalyst has several distinct advantages over other methods for creating carboncarbon double bonds such as using Grignard reagents or Wittig reactions. For example, it does not require high temperatures nor does it involve toxic chemicals which makes it much safer than those alternatives when working in laboratory settings where safety must always remain paramount concern at all times.. In addition, BF3 catalysed reactions are typically very quick and efficient compared to other similar processes which gives them an edge over their competitors when time constraints are involved in synthesising organic compounds efficiently within set timeframes while still maintaining good yield rates overall

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