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Bridging halogens

In cases of more effective 7t-electron donor or tz-donor neighboring groups, as is the case in forming /3-phenylethyl (studied by Don Cram from UCLA Nobel Prize in chemistry, 1987) or /3-halogen bridged species, these have sufficient electrons to form 2e-2c bonds (with some intermediate delocalization). [Pg.151]

Halonium ion (Section 6 16) A species that incorporates apos itively charged halogen Bridged halonium 10ns are inter mediates in the addition of halogens to the double bond of an alkene... [Pg.1285]

Attempts to prepare the mono(cyclopenta-dienyl) derivatives are sometimes frustrated by a Schlenk-type equilibrium (see p. 132), but judicious choice of ligands, solvent etc. occasionally permits the isolation of such compounds, e.g. the centrosymmetric halogen-bridged dimer (t - -C5Me5)Ca(/i-l)(lhf)2 2] which cry.stallizes from toluene solution. The complex is isostruc-tural with the dimeric organosamarium(ll) analogue. - ... [Pg.138]

InPhj mp 208°, TlPhj mp 170°. For Ga and In compounds the primary M-C bonds can be cleaved by HX, X2 or MX3 to give reactive halogen-bridged dimers (R2MX)2. This contrasts with the unreactive ionic compounds of T1 mentioned above, which can be prepared by suitable Grignard reactions ... [Pg.263]

They have di- -halogen bridged structures and are planar (Figure 3.7). [Pg.185]

Figure 3.38 Synthesis of the halogen-bridged 1 1 phosphine complexes. Figure 3.38 Synthesis of the halogen-bridged 1 1 phosphine complexes.
Not all the gold dialkyls have dimeric structures the halogen bridges can be cleaved with excess phosphine ... [Pg.316]

Gaseous chloride complexes with halogen bridges — homo-complexes and hetero-complexes. [Pg.56]

According to CNDO/2 calculations for X, Y, Z = F, this anion possesses a nearly linear halogen bridge in addition to a decreased nucleophilicity and an energetic stability when compared with the simple anion SbY5Z 19). [Pg.224]

Complexity in the manganese and rhenium pentarbonyl halides substitution arises from the fact that these decompose in inert solvents to form the halogen-bridged dimers [M(CO)4X]2. Both monomers and dimers react with phosphines, arsines, pyridine, aniline etc. to give the disubstituted compounds M(CO)3XL2. Thus three final products or any mixture of them may be obtained, depending upon the precise reaction conditions... [Pg.39]

Figure 3.24 Formation of simple or double halogen bridges. Figure 3.24 Formation of simple or double halogen bridges.
Spectroscopic studies [118] of [Cu(5)Br2] suggest NNS coordination and a dimeric halogen bridged complex. This assignment is consistent with non-electrolytic behavior in DMF, but not with a magnetic moment at room temperature of 1.79 B.M. The shift of the thioamide 4 band from 815 cm" to 800 cm on complexation is taken as evidence for coordination of the... [Pg.23]

The localized-valence halogen-bridged platinum(II)/platinum(IV) complexes (175) are of interest because of their highly anisotropic electrical and optical properties. The complexes are characterized by broad and intense intervalence bands in their electronic spectra.542 Partial oxidation of [PtCl(dien)]Cl with iodine yields the mixed valence species [PtI(dien)][PtI3(dien)]I2,543 but when 4Me-dien is used, the mixed valence compound is only obtained if it is trapped quickly, before isomerization of the meridional platinum(IV) complex to a facial form.544 Although these species nominally have localized valences, the extent of delocalization increases as the bridging halide... [Pg.733]

Twenty years later, by studying the chlorination of cis- and trans-di-t-butylethylenes, Fahey (1966) showed that halogen bridging is a general rule. It is expected that, owing to steric repulsions between the two branched groups, the cis-alkene would prefer to react via an open / -chlorocarbocation [14] where free rotation can occur rather than via a chloronium ion [15]. [Pg.235]


See other pages where Bridging halogens is mentioned: [Pg.345]    [Pg.332]    [Pg.965]    [Pg.998]    [Pg.1162]    [Pg.1271]    [Pg.212]    [Pg.212]    [Pg.244]    [Pg.313]    [Pg.93]    [Pg.162]    [Pg.165]    [Pg.74]    [Pg.76]    [Pg.127]    [Pg.134]    [Pg.145]    [Pg.58]    [Pg.310]    [Pg.29]    [Pg.253]    [Pg.253]    [Pg.560]    [Pg.981]    [Pg.23]    [Pg.230]    [Pg.262]    [Pg.333]   
See also in sourсe #XX -- [ Pg.154 ]




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Bridges, halogen

Bridges, halogen

Double halogen bridges

Gaseous Chloride Complexes Containing Halogen Bridges

Halogen complexes bridge systems

Halogen complexes double bridged

Halogen-bridged cations

Halogen-oxygen bridges

Metal clusters halogen bridges

Metal-halogen bridges

Mixed valence complexes, halogen-bridge

Mixed valence compounds halogen bridged

POLARONS AND SOLITONS IN HALOGEN-BRIDGED PLATINUM COMPLEXES

Pseudo One-Dimensional Halogen-Bridged Mixed Valence Complexes

Radicals halogen bridging

Simple halogen bridges

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