With contributions by internationally recognized specialists from different fields, this volume provides a comprehensive look at the state of the science underlying solvent extraction (SX) and the application of supramolecular chemistry (SC). It identifies how supramolecular behavior occurs and is studied in the context of SX and how SC is influencing the direction of SX. This volume examines how principles of SC are being used in advancing the design of new highly selective SX systems and for understanding aggregation phenomena in SX systems.
With contributions by internationally recognized specialists from different fields, this volume provides a comprehensive look at the state of the science underlying solvent extraction (SX) and the application of supramolecular chemistry (SC). It identifies how supramolecular behavior occurs and is studied in the context of SX and how SC is influencing the direction of SX. This volume examines how principles of SC are being used in advancing the design of new highly selective SX systems and for understanding aggregation phenomena in SX systems.Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Bruce A. Moyer, Ph.D., has 34 years of experience in R&D on solvent extraction and ion exchange, focusing on metal ion separations for environmental and waste cleanup, nuclear fuel cycles, recovery of critical materials, and national security applications in the USDOE complex. Dr. Moyer leads the Chemical Separations Group of ORNL's (Oak Ridge National Laboratory) Chemical Sciences Division. He is editor of the journal Solvent Extraction and Ion Exchange and has ten patents and more than 180 career publications.
Inhaltsangabe
Supramolecular Chemistry in Solvent Extraction: Toward Highly Selective Extractants and a Better Understanding of Phase-Transfer Phenomena. Supramolecular Interactions in the Outer Coordination Spheres of Extracted Metal Ions. Molecular Design and Metal Extraction Behavior of Calixarene Compounds as Host Extractants. Protein Extraction by the Recognition of Lysine Residues Using Macrocyclic Molecules. Interfacial Molecular Aggregation in Solvent Extraction Systems. Supramolecular Aspects of Stable Water-in-Oil Microemulsions in Chemical Separations.
Supramolecular Chemistry in Solvent Extraction: Toward Highly Selective Extractants and a Better Understanding of Phase-Transfer Phenomena. Supramolecular Interactions in the Outer Coordination Spheres of Extracted Metal Ions. Molecular Design and Metal Extraction Behavior of Calixarene Compounds as Host Extractants. Protein Extraction by the Recognition of Lysine Residues Using Macrocyclic Molecules. Interfacial Molecular Aggregation in Solvent Extraction Systems. Supramolecular Aspects of Stable Water-in-Oil Microemulsions in Chemical Separations.
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