Monday 9 May 2016

stereochemistry - Why do only chiral molecules rotate the plane of polarized light and how do they rotate it?


I have learnt that only chiral or unsymmetrical molecules can rotate the plane of linearly polarized light. But, why is it so?


And how can molecules rotate the plane or what does it actually mean by 'rotating'? Does it mean that the electric field vectors are tilted or turned left or right depending on the type of isomer?



Answer



See also: How do Optically Active Compounds Rotate Plane Polarized Light?


This is because optical rotation is a chiral phenomenon.



Take a molecule, and draw arrows depicting the polarization of incoming and outgoing light on it. Even if the molecule is achiral, the molecule with the arrows is chiral.


Chirality can't spring out of nowhere, it can only arise from a chiral process.


Also, see my answer here. Since molecules will exist in all rotations in a given fluid, for an achiral molecule the mirror image molecules cancel each other out.


No comments:

Post a Comment

readings - Appending 内 to a company name is read ない or うち?

For example, if I say マイクロソフト内のパートナーシップは強いです, is the 内 here read as うち or ない? Answer 「内」 in the form: 「Proper Noun + 内」 is always read 「ない...