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A wide range of chemical clusters have been analyzed and categorized using skeletal numbers. However, less attention has been given to their applications to 'ordinary compounds' with formulas such as NaCl, CaCl2, AlCl3, CCl4, SF4, PF5, SF6, XeF4, and XeOF4.In this book, skeletal numbers have discovered that some of these formulas actually comprise of a mixture of hidden cluster fragments and ions and especially in xenon clusters. It will be of great interest to find a link between VSEPR (valence shell electron pair repulsion) theory which is normally used to explain some of these formulas and…mehr

Produktbeschreibung
A wide range of chemical clusters have been analyzed and categorized using skeletal numbers. However, less attention has been given to their applications to 'ordinary compounds' with formulas such as NaCl, CaCl2, AlCl3, CCl4, SF4, PF5, SF6, XeF4, and XeOF4.In this book, skeletal numbers have discovered that some of these formulas actually comprise of a mixture of hidden cluster fragments and ions and especially in xenon clusters. It will be of great interest to find a link between VSEPR (valence shell electron pair repulsion) theory which is normally used to explain some of these formulas and the skeletal numbers. Furthermore, it has been found to be very useful to apply the LONE PAIR concept as well to explain these clusters. For the purposes of comparison, the analysis of ZINTL ion clusters has been included to determine their isomeric shapes, cluster valence electrons and LONE PAIRS. As we move across the period for the main group elements, it appears that lone pair formation begins with group 5 and ends with group 8.
Autorenporträt
Enos Masheija Rwantale Kiremire graduated with BSc(Hons) degree majoring in Chemistry from, University of East Africa, Makerere University College, Uganda in 1970. He had the opportunity to be taught briefly by an inspiring notable visiting chemist, Prof. C.A. Coulson. He later did a PhD, graduating in 1977 March at the University of New Brunswick.