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Spin crossing

D. Low-spin Iron(II) Complexes 1. Spin Cross-over... [Pg.84]

Spin cross-over kinetics for Fe(II) complexes 26,103) have been reviewed. The l.s. h.s. (1A1 5T2) transition in solution is character-... [Pg.84]

Furthermore, the method of orientation selection can only be applied to systems with an electron spin-spin cross relaxation time Tx much larger than the electron spin-lattice relaxation time Tle77. In this case, energy exchange between the spin packets of the polycrystalline EPR spectrum by spin-spin interaction cannot take place. If on the other hand Tx < Tle, the spin packets are coupled by cross relaxation, and a powder-like ENDOR signal will be observed77. Since T 1 is normally the dominant relaxation rate in transition metal complexes, the orientation selection technique could widely be applied in polycrystalline and frozen solution samples of such systems (Sect. 6). [Pg.27]

The synthesis of the N03 and PFg salts of the iron(III) complex of the terdentate phenolate anion of the liquid crystal Schiff base (7) provides the first example of the coexistence of spin transition and liquid crystal properties in a single compound. The ligand now needs to be tuned to increase the spin cross-over transition temperature and decrease the transition temperature to the liquid crystal state. ... [Pg.409]

A different, indeed unique, type of spin cross-over behavior is claimed for the mixed valence dithiooxalate salt Pr 4N[Fe Fe (dto)3]. Here the spin change is associated with electron transfer, with the bridging dithiooxalate favoring Fe —S bonding at higher temperatures, Fe —O bonding at lower temperatures ... [Pg.410]

The frequent occurrence of thiocyanate in spin cross-over complexes is documented, in Section 5.4.1.4 above and in connection with diimine and with triazole ligands in Sections 5.4.3.5.9 and 5.4.3.6.3 below, while complex formation with iron(III) appears in Section 5.4.5.1.4. [Pg.433]

Aminomethylpyridine (picolylamine) is an important ligand in respect to spin cross-over, [Fe(2-pic)3]Cl2 being the key compound." Fleat capacity measurements on [Fe(2-pic)3]Cl2 EtOH gave values of 6.14kJmol and 50.59 JK moC for the spin eross-over entropy the determined entropy was analyzed into a spin contribution of 13.38, an ethanol orientational effeet of 8.97, and a vibrational contribution of 28.24 JK mol. " This compound exhibits weak cooperativity in the solid state." The heat capacity of [Fe(2-pic)3]Cl2 MeOH is consistent with very weak cooperativity." [Fe(2-pic)3]Br2 EtOH shows a lattice expansion significantly different from that expected in comparison with earlier-established behavior of [Fe(2-pic)3]Cl2 EtOH." ... [Pg.434]

The iron(II) complexes of the hexadentate 2-pyridylmethyl derivatives of bipy (94) and (95) are spin cross-over compounds, whose light-induced high-spin to low-spin conversion has been monitored in solution by laser flash photolysis. Single exponential kinetics (A h l = 6.7 x 10 s , at 273 K) were observed for [Fe(94)] ", but for [Fe(95)] " kinetics were biphasic, with the spin-conversion step (ku i = 2.5 x 10 s ) followed by a slower step (k = 3.7 x 10 s ) involving rearrangement of the pyridylmethyl pendant arms. ... [Pg.443]

The structures of the bis-ligand iron(II) complexes of the tripodal ligands tris(pyrazol-l-yl)methane and bis(pyrazol-l-yl)(pyridin-2-yl)methane have been determined the former is a spin cross-over complex." " Polybis(pyrazolateiiron(II) has a ID chain structure with the Fe " " ions doubly bridged by pyrazolates the Fe + ions (-S = 2) are weakly antiferromagnetically coupled. ... [Pg.460]

Spin cross-over iron(II)-triazole and -tetrazole complexes have been reviewed. [Pg.461]

The cyclic Schiff base terimine ligand (161) forms a spin cross-over ternary iron(II) complex [Fe(161)(CN)2]. This has intermediate magnetic behavior, indicating a 50 50 mixture of high-spin... [Pg.474]

Spin cross-over behavior has been established for a number of Schiff base complexes of iron(III) complexes with N402-donor sets. A two-step spin cross-over in the warming direction for [Fe A-(8-quinolyl)salicylaldiminate 2](NCSe) has been ascribed to intermolecular TT-interactions between aromatic rings. Usually spin cross-over in these N402-complexes is... [Pg.475]


See other pages where Spin crossing is mentioned: [Pg.59]    [Pg.49]    [Pg.220]    [Pg.89]    [Pg.105]    [Pg.17]    [Pg.362]    [Pg.3]    [Pg.58]    [Pg.86]    [Pg.403]    [Pg.408]    [Pg.408]    [Pg.408]    [Pg.409]    [Pg.409]    [Pg.411]    [Pg.423]    [Pg.443]    [Pg.444]    [Pg.444]    [Pg.452]    [Pg.457]    [Pg.457]    [Pg.459]    [Pg.460]    [Pg.460]    [Pg.461]    [Pg.462]    [Pg.466]    [Pg.474]    [Pg.475]    [Pg.475]    [Pg.497]    [Pg.519]    [Pg.519]   
See also in sourсe #XX -- [ Pg.16 ]




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13C cross-polarization magic-angle spinning

Collision cross-sections spin exchange

Cross magic angle spinning

Cross polarization/magic angle spinning CP/MAS NMR

Cross polarization/magic angle spinning nuclear magnetic resonance spectroscopy

Cross polarization/magic angle spinning spectra

Cross spin interaction

Cross-polarisation magic angle spinning

Cross-polarization and magic angle sample spinning

Cross-polarization and magic-angle spinning

Cross-polarization contact transfer time, spin-lock

Cross-polarization magic angle spinning CP-MAS)

Cross-polarization magic angle spinning NMR

Cross-polarization magic angle spinning amorphous solids

Cross-polarization magic angle spinning carbon-13 nuclear

Cross-polarization magic angle spinning polymorphism

Cross-polarization magic angle spinning quantitative analysis

Cross-polarization magic-angle spinning CPMAS)

Cross-polarization magic-angle spinning NMR spectroscopy

Cross-polarization magic-angle spinning molecular structure studies

Cross-polarization magic-angle spinning techniques

Cross-polarization with magic angle spinning

Cross-polarization-magic angle spinning CP/MAS) technique

Cross-polarization-magic angle spinning application

Cross-polarization/magic-angle spinning

Cross-polarization/magic-angle spinning resonance

Cross-polarized/magic angle spinning

Cross-section for any final spin state

Crossing, intersystem spin-free levels

Differential cross section spin-dependent scattering

Intersystem crossing rate, spin conversion

Intersystem crossing spin orbit coupling mechanism

Intersystem crossing spin-orbit

Magic-angle spinning, dipolar decoupling and cross polarisation

Nuclear Magnetic Resonance, cross polarization magic angle spinning

Relaxation, cross many-spin problem

Spin Kinetics Derivation of the Rate Equation for Cross-Relaxation

Spin cross-over in solid metal complexes

Spin “cross-over

Spin-Correlation Following Cross Recombination

Spin-Forbidden Reaction, Intersystem Crossing

Spin-Orbit Coupling and Intersystem Crossing

Spin-Orbit Coupling and Intersystem Crossing in Biradicals

Spin-locking cross-polarisation

Spin-orbit Inter-System Crossing

Spin-orbit induced intersystem crossing

Transfer time, spin-lock cross-polarization

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