Mendeleev in his first publication ordered the chemical elements following an apparent periodicity of properties such as atomic volume and valence. The reactivity of the elements was only studied systematically many years later. To illustrate the systematic variation of kinetics across the periodic table we compare water residence times for monoatomic ions in aqueous solution. A tremendous variation of tau(H2O) by over 20 orders of magnitude is found, ranging from similar to 10 ps to about 200 years. Apart from some small +2 and +3 cations, all main group elements have very short residence times <10 ns. Transition metal cations of the d-block have water residence times that depend on the electronic configuration. tau(H2O )of lanthanide ions...
Published in Helvetica Chimica Acta, 2005; 88 (3):523-545 at www.interscience.wiley.com The definiti...
Understanding aqueous phase processes involving group 12 metal cations is relevant to both environme...
The usual periodic tables of the chemical elements are already 97 % in accord with quantum mechanics...
Mendeleev in his first publication ordered the chemical elements following an apparent periodicity o...
Differences in alkali metal reactivity with water are often explained in terms of first ionization e...
Water exchange between the coordination shells of metal cations in aqueous solutions is fundamental ...
Reactions of heavy water, D2O, have been measured with 46 atomic metal cations at room temperature i...
Nanosecond ligand exchange dynamics at metal sites within proteins is essential in catalysis, metal ...
International audienceFrom nine to eight : Molecular dynamics simulations of all the lanthanide cati...
Recently, it has become evident that the environment both in the solid state and in solution about a...
Investigating properties of both heavy and light water at the atomistic level is essential to unders...
Peer reviewedMuonium is long-lived in pure water and has been studied over a very wide range of temp...
Department of Chemistry, Inorganic Chemistry Division, University College of Science, Calcutta 7000...
For clarifying the nature of aqueous reactions, it is absolutely important to rationalize various ch...
Abstract-The extension of the Periodic Table into the range of unknown atomic numbers of above one h...
Published in Helvetica Chimica Acta, 2005; 88 (3):523-545 at www.interscience.wiley.com The definiti...
Understanding aqueous phase processes involving group 12 metal cations is relevant to both environme...
The usual periodic tables of the chemical elements are already 97 % in accord with quantum mechanics...
Mendeleev in his first publication ordered the chemical elements following an apparent periodicity o...
Differences in alkali metal reactivity with water are often explained in terms of first ionization e...
Water exchange between the coordination shells of metal cations in aqueous solutions is fundamental ...
Reactions of heavy water, D2O, have been measured with 46 atomic metal cations at room temperature i...
Nanosecond ligand exchange dynamics at metal sites within proteins is essential in catalysis, metal ...
International audienceFrom nine to eight : Molecular dynamics simulations of all the lanthanide cati...
Recently, it has become evident that the environment both in the solid state and in solution about a...
Investigating properties of both heavy and light water at the atomistic level is essential to unders...
Peer reviewedMuonium is long-lived in pure water and has been studied over a very wide range of temp...
Department of Chemistry, Inorganic Chemistry Division, University College of Science, Calcutta 7000...
For clarifying the nature of aqueous reactions, it is absolutely important to rationalize various ch...
Abstract-The extension of the Periodic Table into the range of unknown atomic numbers of above one h...
Published in Helvetica Chimica Acta, 2005; 88 (3):523-545 at www.interscience.wiley.com The definiti...
Understanding aqueous phase processes involving group 12 metal cations is relevant to both environme...
The usual periodic tables of the chemical elements are already 97 % in accord with quantum mechanics...