Salophen-uranyl Complexes As Versatile Supramolecular Receptors: Physico-chemical Investigation on the Binding Ability of Salophen-uranyl Receptors Towards Anions and  Ion-pairs in the Condensed Phase - Massimo Cametti - Books - LAP LAMBERT Academic Publishing - 9783838369549 - September 2, 2010
In case cover and title do not match, the title is correct

Salophen-uranyl Complexes As Versatile Supramolecular Receptors: Physico-chemical Investigation on the Binding Ability of Salophen-uranyl Receptors Towards Anions and Ion-pairs in the Condensed Phase

Price
HK$ 502
excl. VAT

Ordered from remote warehouse

Expected to be ready for shipping Sep 15 - 21
Get notified about new Massimo Cametti releases
Add to your iMusic wish list

Not rated yet

This book describes recent studies on the effectiveness of Salophen-Uranyl complexes as receptors for a wide variety of organic and inorganic guests. A brief description on the fundamental concepts of Supramolecular Chemistry is also given in an introductory Chapter One. Salophen-Uranyl complexes are demonstrated to be quite efficient receptors for organic quaternary ammonium and aromatic iminium salts, and zwitterions (Chapter Two); in Chapter Three the recognition of higher alkali metal halides (K+, Rb+ and Cs+) is presented. A critical analysis on the state of the art in the field introduces the novel experimental work (sections 3.1 and 3.2). Recognition of fluoride is the subject of Chapter Four. A general overview introduces the use of a simple Salophen-Uranyl complex for the colorimetric sensing of fluoride in mM concentration in a polar aprotic organic solvent. Chapter Five speculates on the possible employment of Salophen-Uranyl complexes and their Al-derivatives in Molecular Tectonics (sections 5.2-5.4). An overview on this multidisciplinary area of research is included (5.1).

Media Books     Paperback Book   (Book with soft cover and glued back)
Released September 2, 2010
ISBN13 9783838369549
Publishers LAP LAMBERT Academic Publishing
Pages 164
Dimensions 225 × 9 × 150 mm   ·   262 g
Language German