Q.Classify the following species into Lewis acids and Lewis bases and show how these act as such:
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Start your 14-day free trial to unlock the full solution →Lewis acids accept electron pairs; Lewis bases donate electron pairs. Here, and are Lewis bases (they donate lone pairs), while and are Lewis acids (they accept electron pairs). The classification is: (a) Lewis base, (b) Lewis base, (c) Lewis acid, (d) Lewis acid.
The Lewis theory of acids and bases is beautifully simple: it’s all about electron pairs. A Lewis acid is any species that can accept a pair of electrons (it’s electron-deficient). A Lewis base is any species that can donate a pair of electrons (it’s electron-rich). This is broader than the Brønsted-Lowry idea (which focuses on protons), because it covers molecules like that have no hydrogen at all.
Let’s look at each species one by one.
- (hydroxide ion) The hydroxide ion has a negative charge and three lone pairs on oxygen. It is electron-rich and loves to share a lone pair. For example, when it reacts with , it donates a lone pair to form a coordinate bond:
Here, is the donor — so it is a Lewis base.
- (fluoride ion) Fluoride ion has a full octet and four lone pairs. It is also electron-rich and readily donates a lone pair. For instance, with :
The fluoride ion donates its lone pair to boron. So is a Lewis base.
- (proton) A proton has no electrons at all — it’s just a bare nucleus. It desperately needs an electron pair to become stable (as in or ). When it accepts a lone pair from a base, it forms a coordinate bond. So is a Lewis acid. …
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