Understanding Periodic and Non-periodic Chemistry in Periodic Tables

Понимание периодической и непериодической химии в периодических таблицах
Changsu Cao, René Vernon, W. H. Eugen Schwarz, Jun Li
2021-01-06

Periodic Tableschemical periodicitynon-periodic chemistryperiodic trendsvalence electron configurations
The chemical elements are the “conserved principles” or “kernels” of chemistry that are retained when substances are altered. Comprehensive overviews of the chemistry of the elements and their compounds are needed in chemical science. To this end, a graphical display of the chemical properties of the elements, in the form of a Periodic Table, is the helpful tool. Such tables have been designed with the aim of either classifying real chemical substances or emphasizing formal and aesthetic concepts. Simplified, artistic, or economic tables are relevant to educational and cultural fields, while practicing chemists profit more from “chemical tables of chemical elements.” Such tables should incorporate four aspects:(i)typical valenceelectron configurations of bonded atomsin chemical compounds (instead of the common but chemically atypical ground states of free atoms in physical vacuum);(ii)at least three basic chemical properties (valence number, size, and energyof the valence shells), their joint variation across the elements showing principal and secondary periodicity;(iii)elements in which the (sp)8, (d)10, and (f)14valence shells become closed and inert under ambient chemical conditions, thereby determining the “fix-points” of chemical periodicity;(iv)peculiar elements at the top and at the bottomof the Periodic Table. While it is essential that Periodic Tables display important trends in element chemistry we need to keep our eyes open for unexpected chemical behavior in ambient, near ambient, or unusual conditions. The combination of experimental data and theoretical insight supports a more nuanced understanding of complex periodic trends and non-periodic phenomena.
1
Chemically useful periodic tables should represent typical valence-electron configurations of bonded atoms rather than atypical ground states of isolated atoms in vacuum.
2
Closure of (sp)8, (d)10, and (f)14 valence shells under ambient conditions establishes chemically inert fix-points that structure periodicity.
3
Combining experimental data with theoretical insight enables a more nuanced interpretation of complex periodic trends and non-periodic chemical phenomena.
4
Comprehensive periodic tables should highlight peculiar elements at the top and bottom while accommodating unexpected, non-periodic behavior across different chemical conditions.
5
Elemental chemistry is organized by coordinated variation in valence number, valence-shell size, and valence-shell energy, producing both principal and secondary periodicity.

chemical elements and their compounds represented in Periodic Tables

periodic and non-periodic trends in chemical properties, including valence configurations, valence number, size and energy, shell closure, and anomalous behavior under varied conditions

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2021-01-06
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Changsu Cao
René Vernon
W. H. Eugen Schwarz
Jun Li
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