This program is directed at establishing the fundamental principles that will make the most strongly binding ligands and their complexes available to separations technologies.The ultimate powerful ligands can capture metal ions in the most competitive of circumstances. Ultra tight-binding ligands can remove metal ions from mineralized sites, take them away from lesser ligands, and even capture metal ions from extremely dilute solutions. Further, these feats offer the possibility of solving some of the most serious environmental challenges that cannot be met by existing technologies: decontamination of metal surfaces, removal of metal contaminations from soils, separation of very low concentrations of radioactive metal ions from nuclear wast...
Research into the coordination chemistry of transactinide elements should provide us with new fundam...
The affinity exhibited by proteins for chelated metals has been exploited in two new protein purific...
Improved separations of nuclear materials will have a significant impact upon a broad range of DOE a...
Ultra-strong Ligands Are Under Utilized Because They Are Slow. When the most challenging problems em...
technologies by gaining control over the properties that militate against such applications. The mai...
Much of the earth's pollution involves compounds of the metallic elements, including actinides, stro...
'Whereas such traditional separation methodologies as ion exchange and solvent extraction require ra...
'This program is fully staffed and all proposed investigations are proceeding as outlined in the Tas...
Sequestering and removing toxic metal ions from their surroundings is an increasingly active area of...
The discriminate bonding of metal ions is a challenge to the synthetic chemist and a phenomenon of c...
Highly selective affinity-based separations have greatly evolved over the past two decades to improv...
Organic ligands that exhibit a high degree of metal ion recognition are essential precursors for dev...
The project objective was the discovery of new ligands for performing metal ion separations. The res...
The purification of recombinant proteins is a rapidly expanding industry which currently relies on m...
Metal binding provides several useful routes to protein stabilization. Metal chelation by binding si...
Research into the coordination chemistry of transactinide elements should provide us with new fundam...
The affinity exhibited by proteins for chelated metals has been exploited in two new protein purific...
Improved separations of nuclear materials will have a significant impact upon a broad range of DOE a...
Ultra-strong Ligands Are Under Utilized Because They Are Slow. When the most challenging problems em...
technologies by gaining control over the properties that militate against such applications. The mai...
Much of the earth's pollution involves compounds of the metallic elements, including actinides, stro...
'Whereas such traditional separation methodologies as ion exchange and solvent extraction require ra...
'This program is fully staffed and all proposed investigations are proceeding as outlined in the Tas...
Sequestering and removing toxic metal ions from their surroundings is an increasingly active area of...
The discriminate bonding of metal ions is a challenge to the synthetic chemist and a phenomenon of c...
Highly selective affinity-based separations have greatly evolved over the past two decades to improv...
Organic ligands that exhibit a high degree of metal ion recognition are essential precursors for dev...
The project objective was the discovery of new ligands for performing metal ion separations. The res...
The purification of recombinant proteins is a rapidly expanding industry which currently relies on m...
Metal binding provides several useful routes to protein stabilization. Metal chelation by binding si...
Research into the coordination chemistry of transactinide elements should provide us with new fundam...
The affinity exhibited by proteins for chelated metals has been exploited in two new protein purific...
Improved separations of nuclear materials will have a significant impact upon a broad range of DOE a...