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Clusters cryptand

Ms " clusters have 12 framework bonding electrons as has [BsHs]- (p. 161) the anions are also isoelectronic with the well-known cation [Bis]. Similarly, the alloy NaSn. 2.23 reacts with cryptand in ethylenediamine to give dark-red crystals of [Na(ciypt)]4 [Sng] the anion is the first example of a C41, unicapped Archi-median antiprism (Fig. 10. lOc) and differs from the >3/, structure of the isoelectronic cation [Bis] + which, in the salt Bi+[Bi9] +[HfCl6]5 (p. 591), features a tricapped trigonal prism, as in [BgHg] " (p. 153). The emerald green species [Pb9] , which is stable in liquid NH3 solution, has not so far proved amenable to isolation via ciyptand-complexed cations. [Pg.394]

The influence of electron-count on cluster geometry has been very elegantly shown by a crystallographic study of the deep-red compound [K(ctypt)]g [Ge9]- [Ge9] .2.5en, prepared by the reaction of KGe with cryptand in ethylenediamine. [Ge9] has the C4, unicapped square-antiprismatic structure (10.10c) whereas [Ge9]- , with 2 less electrons, adopts a distorted Dit, structure which clearly derives from the tricapped trigonal prism (p. 153).The field is one of... [Pg.394]

Alkali metal anions have also been generated as a result of cryptand stabilization of the corresponding cation. Cryptands were found to enhance the solubility of zerovalent alkali metals in various organic solvents.156-157 Initially, the solutions apparently contain the cryptate cation and solvated electrons together with free ligand. When more metal is dissolved, metal anions, M , are formed.158 Dye and co-workers have isolated gold-colored crystals of [Na+ c 2.2.2]Na 159160 and the crystal structure has been determined.161,162 Anion clusters such as Sb] , Pb2 and Sn," have been isolated as crystalline salts of the [2.2.2] cryptate counterion [2.2.2].162,163... [Pg.938]

For the mononuclear and dinuclear compounds, except V(CO)6, the mnnber of valence electrons per metal atom is 18. The EAN (effective atomic number) of the metal is the number of electrons of the d" configuration added to twice the number of CO groups, one electron being further added in the case of metal-metal bonded dinuclear systems. For trinuclear, tetranuclear, and hexanuclear compoimds (metal-carbonyl clusters), the cluster valence electron counting is 48, 60, and 86, respectively. As the [K(cryptand 2.2.2)] derivative. As the tetraalkylammonium derivative. As the tetrachloroaluminate. [Pg.641]

The endo-endo conformation of cryptands can be internally protonated to form proton cryptates. With the small cryptands, e.g. [1.1.1]- and [2.1.1]-cryptand (15a and 15b), the two internal protons are so efficiently shielded from H2O and OH that deprotonation only very slowly occurs even in strong base (8UA6044). Alkali cation cryptates are able to stabilize unusual species as their counterions. Dye and coworkers have isolated several alkali metal anions by this method. The sodium species (Na [2.2.2]cryptand Na ) was obtained as gold metallic crystals and gave a Na NMR with a broad Na -cryptate resonance and a narrow, upheld Na resonance. The other alkali metals show similar behavior and an electride salt (Na [2.2.2]cryptand e l has even been isolated (B-79MI52105). Crystalline anionic clusters of the heavy post-transition metals (such as Sb7 , Pbs , Sng ) were first obtained with alkali metal cryptates as the counterions (75JA6267). [Pg.744]

In the crystal structure of [Na([2.2.2]crypt)]4Sn9 all cations are completely surrounded by cryptand molecules, and no interactions occur between the anionic nido-clusters and Na [23]. [Pg.55]

These chains are linked at each end by a nitrogen atom. Cryptands, like the crown ethers, can form coordination complexes with ions that can tit into the cavity formed by the open three-dimensional structure, i.e. they can cryptate the ion. Various types of cryptand have been produced having both spherical and cylindrical cavities. The cryptands have the same kind of properties as the crown ethers and the same uses. In general, they form much more strongly bound complexes and can be used to stabilize unusual ionic species. For example, it is possible to produce the negative Na ion in the compound [(2,2,2)-cryptand-Na] Na , which is a gold-coloured crystalline substance stable at room temperature. Cluster ions, such as Pbs ", can be similarly stabilized. [Pg.208]

A particularly interesting development concerns the solution chemistry of [Zr6Gi2Z] clusters. [100, 101] Alkali metal salts of the kind A Zr Q,2+ Z can be dissolved (e.g. in CH3CN in the presence of a cryptand) and the clusters are then isolated as R4N or (C H5)4P salts. This solution chemistry of interstitially stabilized clusters entered via solid state preparations promises great versatility and adds new facets to the traditional cluster chemistry of the neighboring elements Nb and Ih. [Pg.392]

Lakshminarayanan PS, Suresh E, Chosh P (2005) Formation of an infinite 2D-layered water of (H20)45 cluster in a cryptand-water supramolecular complex atemplate effect. J Am Chem Soc 127 13132-13133... [Pg.132]


See other pages where Clusters cryptand is mentioned: [Pg.93]    [Pg.393]    [Pg.590]    [Pg.934]    [Pg.26]    [Pg.166]    [Pg.188]    [Pg.49]    [Pg.74]    [Pg.744]    [Pg.744]    [Pg.459]    [Pg.240]    [Pg.1451]    [Pg.5865]    [Pg.203]    [Pg.205]    [Pg.93]    [Pg.393]    [Pg.241]    [Pg.413]    [Pg.239]    [Pg.1450]    [Pg.5864]    [Pg.74]    [Pg.160]    [Pg.307]    [Pg.338]    [Pg.78]    [Pg.302]    [Pg.588]    [Pg.412]   
See also in sourсe #XX -- [ Pg.284 ]




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Cryptands 2.1.1 [cryptand

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