Identify the electrophilic site in the following molecule.

Chemistry
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Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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**Identify the Electrophilic Site in the Following Molecule**

In the image, we are presented with a chemical structure featuring a boron atom (B) bonded to two oxygen atoms (O), forming a cyclic borate ester. This molecule consists of a three-membered ring with boron at the vertex and two carbon atoms attached.

### Key Features of the Molecule:

- **Boron Atom (B):** Central to the structure, the boron atom is bonded to two oxygen atoms. Boron, being electron-deficient, typically acts as an electrophile.
- **Oxygen Atoms (O):** These are double-bonded to the boron and complete the three-membered ring structure.
- **Methyl Groups (represented by lines):** Attached to carbon atoms extending from the borate ring.

### Identification:
The electrophilic site in this molecule is the boron atom (B). Due to its electron deficiency, it readily seeks electrons, making it a common site for nucleophilic attack in chemical reactions.
Transcribed Image Text:**Identify the Electrophilic Site in the Following Molecule** In the image, we are presented with a chemical structure featuring a boron atom (B) bonded to two oxygen atoms (O), forming a cyclic borate ester. This molecule consists of a three-membered ring with boron at the vertex and two carbon atoms attached. ### Key Features of the Molecule: - **Boron Atom (B):** Central to the structure, the boron atom is bonded to two oxygen atoms. Boron, being electron-deficient, typically acts as an electrophile. - **Oxygen Atoms (O):** These are double-bonded to the boron and complete the three-membered ring structure. - **Methyl Groups (represented by lines):** Attached to carbon atoms extending from the borate ring. ### Identification: The electrophilic site in this molecule is the boron atom (B). Due to its electron deficiency, it readily seeks electrons, making it a common site for nucleophilic attack in chemical reactions.
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