Relativistic effects on the chemistry of heavier elements: why not given proper importance in chemistry education at the undergraduate and postgraduate level?

Author:

Das Ankita1ORCID,Das Udita2ORCID,Das Ruhi3,Das Asim K.2ORCID

Affiliation:

1. School of Chemical Sciences, Indian Association of Cultivation for the Science , Kolkata 700032 , India

2. Department of Chemistry , Visva Bharati , Santiniketan 731235 , India

3. Chemistry Department , Bolpur College , Bolpur 731204 , India

Abstract

Abstract Relativistic effects are important to understand the chemistry of heavier elements across the periodic table (PT). Three important relativistic effects are: contraction of s- and p-orbitals (direct relativistic effect), expansion of d- and f-orbitals (indirect relativistic effect) and spin–orbit (SO) coupling to split the p-, d- and f-orbitals. Each of these effects is approximately proportional to Z 2 (Z = atomic number) for the valence shell electrons in many electron atoms and consequently, these relativistic effects dominantly control the properties of the heavier elements (mainly the 6th and 7th period elements). These aspects are not given the proper importance in most of the inorganic chemistry text books and in chemistry education at the university level.

Publisher

Walter de Gruyter GmbH

Subject

Education,Chemistry (miscellaneous)

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