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The Anions

Although the structure of [SsN] has not been established by X-ray crystallography, the vibrational spectra of 30% N-enriched [SsN] suggest an unbranched [SNSS] (5.22) arrangement of atoms in contrast to the branched structure (Dsh) of the isoelectronic [CSs] and the isovalent [NOs] ion (Section 1.2). Mass spectrometric experiments also support the SNSS connectivity in the gas phase.Many metal complexes are known in which the [SsN] ion is chelated to the metal by two sulfur atoms (Section 7.3.3). Indeed the first such complex, Ni(S3N)2, was reported more than twenty years before the discovery of the anion. It was isolated as a very minor product from the reaction of NiCl2 and S4N4 in methanol. However, some of these complexes, e.g., Cu and Ag complexes, may be obtained by metathetical reactions between the [S3N] ion and metal halides. [Pg.100]


If triphenylmethyl chloride in ether is treated with sodium, a yellow colour is produced due to the presence of the anionic spiecies PhsC". Alternatively, if triphenylmethyl chloride is treated with silver perchlorate in a solvent such as THF, the triphenylmethyl cation is obtained. More conveniently, triphenylmethyl salts, PhsC X", can be obtained as orange-red crystalline solids from the action of the appropriate strong acid on triphenylcarbinol in ethanoic or propanoic anhydride solution. The perchlorate, fluoroborate and hexafluoro-phosphate salts are most commonly used for hydride ion abstraction from organic compounds (e.g. cycloheptatriene gives tropylium salts). The salts are rather easily hydrolysed to triphenylcarbinol. [Pg.406]

Anions are usually less strongly hydrated, as indicated above, and from equation A2.4.38 this would suggest that increasing the charge on the anion should lead unequivocally to an increase in mobility and hence to an increase in limitmg ionic conductivity. An inspection of table A2.4.2 shows this to be home out to some extent by the limited data... [Pg.573]

The transition-state spectroscopy experiment based on negative-ion photodetachment described above is well suited to the study of the F + FI2 reaction. The experiment is carried out tln-ough measurement of the photoelectron spectrum of the anion FH,. This species is calculated to be stable with a binding energy of... [Pg.878]

The observation of a bend progression is particularly significant. In photoelectron spectroscopy, just as in electronic absorption or emission spectroscopy, the extent of vibrational progressions is governed by Franck-Condon factors between the initial and final states, i.e. the transition between the anion vibrational level u" and neutral level u is given by... [Pg.879]

This then is the limiting radius ratio for six nearest neighbours— when the anion is said to have a co-ordination number of 6. Similar calculations give the following limiting values ... [Pg.36]

For the most part it is true to say that the chemistry of the alkali and alkaline earth metal compounds is not that of the metal ion but rather that of the anion with which the ion is associated. Where appropriate, therefore, the chemistry of these compounds will be discussed in other sections, for example nitrates with Group V compounds, sulphates with Group VI compounds, and only a few compounds will be discussed here. [Pg.126]

Such water, and also that containing salts of multipositive metals, (usually sulphates), is said to be hard since it does not readily produce a lather with soap. Experiments with alkali metal salts can be performed to verify that the hardness is due to the presence of the multipositive metal ions and not to any of the anions present. The hardness due to calcium and magnesium hydrogencarbonates is said to be temporary since it can be removed by boiling ... [Pg.273]

It is extensively used industrially as a catalyst, notably in the oxidation of sulphur dioxide to the trioxide in sulphuric acid manufacture. It is an essentially acidic oxide, dissolving in alkalis to give vanadates however, addition of acid converts the anionic vanadate species to cationic species, by processes which are very complex, but which overall amount to the following ... [Pg.374]

Apart from two unstable oxide halides, MnOjF and Mn03Cl, this state is exclusively represented by the oxide Mn207 and the anion MnO. ... [Pg.385]

Values for these coefficients, a, b, c, of Eq. (12) can be obtained from the ionization potentials and electron affinities of the neutral, the cationic, and the anionic states of an orbital. [Pg.330]

Note that agreement with Pariser and Parr s empirical value is better for Y13 than for Yn ) Use Salem s values to calculate election densities on the three carbon atoms of the allyl anion for one iteration beyond the initial Huckel values, as was done in Exercise 8.9.1. Comment on the results you get, as to the qualitative picture of the anion, the influence of election repulsion on the charge densities, and agreement or lack of agreement with the results already obtained with the Pariser and Parr parameters. [Pg.261]

The first step is the interaction of the basic catalyst with the ester to produce the carbanion (I) the carbanion so formed then attacks the carbonyl carbon of a second molecule of ester to produce the anion (II), which is converted to ethyl acetoacetate (II) by the ejection of an ethoxide ion. Finally (III) reacts with ethoxide ion to produce acetoacetic ester anion (IV). This and other anions are mesomeric thus (IV) may be written ... [Pg.476]

The sodiocompound may be written [CHtCOOCjHjij] Na, and it must always be home in mind that the anion is mesomeric. The system reacts smoothly with an alkyl halide to give a C-substituted malonic ester, evidently through the carbanion (I) ... [Pg.483]

The monosubstituted malonic ester still possesses an activated hydrogen atom in its CH group it can be converted into a sodio derivative (the anion is likewise mesomeric) and this caused to react with an alkyl halide to give a C-disubstituted malonic ester. The procedure may accordingly be employed for the synthesis of dialkyImalonic and dialkylacetic acids ... [Pg.484]

It has been suggested that SO3 is the actual electrophilic reagent leading to C3HsS03, the anion of CgH5S03H. However, in sulphuric acid, the following equilibrium probably exists ... [Pg.549]

In the strongly basic medium, the reactant is the phenoxide ion high nucleophilic activity at the ortho and para positions is provided through the electromeric shifts indicated. The above scheme indicates theorpara substitution is similar. The intermediate o-hydroxybenzal chloride anion (I) may react either with a hydroxide ion or with water to give the anion of salicyl-aldehyde (II), or with phenoxide ion or with phenol to give the anion of the diphenylacetal of salicylaldehyde (III). Both these anions are stable in basic solution. Upon acidification (III) is hydrolysed to salicylaldehyde and phenol this probably accounts for the recovery of much unreacted phenol from the reaction. [Pg.692]

The mechanism of the reaction, which is of the aldol type, involves the car-bonyl group of tlie aldehyde and an active methylene group of the anhydride the function of the basic catalyst B (acetate ion 0H3000 or triethylamine N(0,Hb)j) is to form the anion of the active hydrogen component, i.e., by the extraction of a proton from the anhydride ... [Pg.707]


See other pages where The Anions is mentioned: [Pg.12]    [Pg.38]    [Pg.52]    [Pg.63]    [Pg.63]    [Pg.106]    [Pg.106]    [Pg.107]    [Pg.141]    [Pg.212]    [Pg.218]    [Pg.396]    [Pg.406]    [Pg.193]    [Pg.507]    [Pg.602]    [Pg.874]    [Pg.879]    [Pg.1615]    [Pg.1932]    [Pg.2156]    [Pg.2578]    [Pg.2601]    [Pg.2753]    [Pg.124]    [Pg.354]    [Pg.363]    [Pg.395]    [Pg.439]    [Pg.639]    [Pg.642]    [Pg.278]    [Pg.445]    [Pg.484]   


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A New Reactive Intermediate The Homoenolate Anion

Acidity of a-Hydrogens the Enolate Anion

Acids and the Anions Derived from Their Total Ionization

Acylation of enolate anions the Claisen reaction

Addition of Pyrrolecarbodithioate Anions to the Multiple Bond

Ammonia the anion

Analogues of the Cyclopentadienyl Anion

Anion Coordination Chemistry and the Recognition of Anionic Substrates

Anion Exchange in the Solid State

Anionics at the air/water interface

Anions and the Effect of Supporting Electrolyte at Ag Electrodes

Complexes of Thiazyl Halides NSX (X F, Cl, Br), NSF3 and the Anion

Complexes of the 3 anion

Complexes of the and 2-Anions

Confirmatory tests for anions on the semimicro scale

Effect of the Anion

Electronic Configurations of the Allyl Radical, Cation, and Anion

Hydroxy Ketone TMs The Dithiane Anion

Hypochlorous acid and the hypochlorite anion

III) Complexes with the Weakly Bonded Anions and

Initiators for the Anionic Polymerization of Lactams

Michael Addition of the Trichloromethyl Anion

Nucleophilic Displacement of Bromine or Chlorine Atoms with the Fluoride Anion

Perfluoroaryl Boranes in the Synthesis of Novel Weakly Coordinating Anions

Phosphates with Chain Anions. The Polyphosphates

Phosphates with Cyclic Anions. The Metaphosphates

Properties of the Metal and Anion Sites

REACTIONS OF THE ANIONS

Rapid End Group Exchange in the Presence of Anionic Catalysts

Reactions Initiated by the Attack of Anions

STUDY OF THE CLINOPTILOLITE-RICH TUFF-BASED COMPOSITES FOR SOME AQUEOUS ANIONIC SPECIES RECOVERY

Solvent Influence on the Reactivity of Ambident Anions

Special tests for mixtures of anions on the semimicro scale

Stabilisation of Enolate Anions — The Enolase Superfamily

Structures of the anions

Superoxide Anion in the Enzymatic Conversion of L-Arginine to NO

Testing for anions in solution on the semimicro scale

The (x 2, 3) Anions

The Anion Hofmeister Series

The Anion Series

The Anionic Mechanism

The Anionic Route

The Boryl Anion

The Cations and Anions

The Cyclopentadienyl Anion and Cation

The Diazene Anion

The F2 Radical Anion

The Hydrazyl Anion

The Influence of Different Anions

The Lewis Structures of Molecules, Cations and Anions, Including Oxyanions

The Nitrogen Tetrahydride Anion, NH

The Polyiodide Anions

The Role of Alkene and Anionic Ligands

The Role of Redox Processes in Reactions Catalyzed by Nickel and Palladium Complexes with Anionic Pincer Ligands

The Structure and Reactions of Phosphonate Anions

The Thionyl Imide Anion

The chemistry of small boranes and their anions (Bi

The protonation of anthracene anion radical by phenol

Transport over the Anionic Blackberry Membrane

Two-Component Anionic Lipid Models with Sink Condition in the Acceptor Compartment

With Anion Exchange Resins in the Carboxylate Form

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