Rational ligand design for metal ion recognition. Synthesis of a N-benzylated N2S3-donor macrocycle for enhanced silver(i) discrimination
Author:
Publisher
Royal Society of Chemistry (RSC)
Subject
Inorganic Chemistry
Link
http://pubs.rsc.org/en/content/articlepdf/2006/DT/B613636M
Reference21 articles.
1. New Macrocyclic Ligands. Synthesis of an Extensive Series of Potentially Pentadentate Ligands Containing Mixed Nitrogen, Oxygen and or Sulfur Heteroatoms. The X-Ray Structure of an O2N2S Derivative
2. Ligand design and metal-ion recognition. Comparison of the interaction of cobalt(II) and nickel(II) with 16- to 19-membered mixed-donor macrocycles
3. Metal-ion recognition. Modeling the stability constants of some mixed-donor macrocyclic metal ion complexes—a simple model
4. Macrocyclic ligand design. Effect of donor-set and ringsize variation on silver(I)/lead(II) discrimination within an extended series of dibenzo substituted rings
5. A new series of quinquedentate macrocycles exhibiting systematic donor-atom variation: equilibrium and X-ray structural data for their interaction with copper(II)
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5. Comparative investigation of the interaction of Zn(II), Cd(II), Ag(I) and Pb(II) with dibenzo-substituted macrocyclic ligands incorporating both symmetrically and unsymmetrically arranged N, O and S donors: synthetic, solution and X-ray studies;Supramolecular Chemistry;2012-05-23
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