Titanocene dichloride


Gas phase thermochemistry data

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Data compilation copyright by the U.S. Secretary of Commerce on behalf of the U.S.A. All rights reserved.

Data compiled by: José A. Martinho Simões

Quantity Value Units Method Reference Comment
Δfgas-264.8 ± 8.0kJ/molReviewMartinho SimõesSelected data.
Δfgas-542. ± 21.kJ/molReviewMartinho Simões 
Δfgas-564. ± 21.kJ/molReviewMartinho Simões 

Reaction thermochemistry data

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Data compilation copyright by the U.S. Secretary of Commerce on behalf of the U.S.A. All rights reserved.

Data compiled by: José A. Martinho Simões

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Individual Reactions

C10H10I2Ti (solution) + Titanocene dichloride (solution) = 2C10H10ClITi (solution)

By formula: C10H10I2Ti (solution) + C10H10Cl2Ti (solution) = 2C10H10ClITi (solution)

Quantity Value Units Method Reference Comment
Δr-3.4kJ/molEqSBruce and Tyler, 1985solvent: Perdeuterated benzene; The reaction enthalpy relies on a single value for the equilibrium constant. It assumes a negligible reaction entropy

C30H28Fe2Ti (cr) + 2(Hydrogen chloride • 4.40Water) (solution) = 2Ferrocene (cr) + Titanocene dichloride (cr)

By formula: C30H28Fe2Ti (cr) + 2(HCl • 4.40H2O) (solution) = 2C10H10Fe (cr) + C10H10Cl2Ti (cr)

Quantity Value Units Method Reference Comment
Δr-253.5 ± 4.5kJ/molRSCDias, Salema, et al., 1982Please also see Calhorda, Dias, et al., 1987.

C22H20O2Ti (cr) + 2(Hydrogen chloride • 5.55Water) (solution) = 2Phenol (cr) + Titanocene dichloride (cr)

By formula: C22H20O2Ti (cr) + 2(HCl • 5.55H2O) (solution) = 2C6H6O (cr) + C10H10Cl2Ti (cr)

Quantity Value Units Method Reference Comment
Δr-5.8 ± 2.5kJ/molRSCDias, Salema, et al., 1981Please also see Calhorda, Carrondo, et al., 1986.

C14H10Cl6O4Ti (cr) + 2(Hydrogen chloride • 4.40Water) (solution) = Titanocene dichloride (cr) + 2Trichloroacetic Acid (cr)

By formula: C14H10Cl6O4Ti (cr) + 2(HCl • 4.40H2O) (solution) = C10H10Cl2Ti (cr) + 2C2HCl3O2 (cr)

Quantity Value Units Method Reference Comment
Δr13.4 ± 2.6kJ/molRSCDias, Salema, et al., 1984Please also see Calhorda, Carrondo, et al., 1986.

C10H10N6Ti (cr) + 2(Hydrogen chloride • 4.18Water) (solution) = Titanocene dichloride (cr) + 2Hydrogen azide (g)

By formula: C10H10N6Ti (cr) + 2(HCl • 4.18H2O) (solution) = C10H10Cl2Ti (cr) + 2HN3 (g)

Quantity Value Units Method Reference Comment
Δr75.7 ± 5.8kJ/molRSCCalhorda, Gomes da Costa, et al., 1982Please also see Dias, Dias, et al., 1987.

C14H10F6O4Ti (cr) + 2(Hydrogen chloride • 4.40Water) (solution) = Titanocene dichloride (cr) + 2Trifluoroacetic acid (l)

By formula: C14H10F6O4Ti (cr) + 2(HCl • 4.40H2O) (solution) = C10H10Cl2Ti (cr) + 2C2HF3O2 (l)

Quantity Value Units Method Reference Comment
Δr37.8 ± 2.3kJ/molRSCCalado, Dias, et al., 1981Please also see Calhorda, Carrondo, et al., 1986.

Titanium, bis(η5-2,4-cyclopentadien-1-yl)dimethyl- (cr) + 2(Hydrogen chloride • 5.55Water) (solution) = Titanocene dichloride (cr) + 2Methane (g)

By formula: C12H16Ti (cr) + 2(HCl • 5.55H2O) (solution) = C10H10Cl2Ti (cr) + 2CH4 (g)

Quantity Value Units Method Reference Comment
Δr-192.0 ± 5.9kJ/molRSCCalhorda, Dias, et al., 1987 

C11H13ClTi (cr) + (Hydrogen chloride • 4.40Water) (solution) = Titanocene dichloride (cr) + Methane (g)

By formula: C11H13ClTi (cr) + (HCl • 4.40H2O) (solution) = C10H10Cl2Ti (cr) + CH4 (g)

Quantity Value Units Method Reference Comment
Δr-68.9 ± 3.1kJ/molRSCCalhorda, Dias, et al., 1987 

Gas phase ion energetics data

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Data compilation copyright by the U.S. Secretary of Commerce on behalf of the U.S.A. All rights reserved.

Data compiled as indicated in comments:
LBLHLM - Sharon G. Lias, John E. Bartmess, Joel F. Liebman, John L. Holmes, Rhoda D. Levin, and W. Gary Mallard
LLK - Sharon G. Lias, Rhoda D. Levin, and Sherif A. Kafafi
RDSH - Henry M. Rosenstock, Keith Draxl, Bruce W. Steiner, and John T. Herron

Ionization energy determinations

IE (eV) Method Reference Comment
8.98 ± 0.16EIDillard and Kiser, 1969RDSH
8.50PEBohm, 1982Vertical value; LBLHLM
8.5 ± 0.1PECauletti, Clark, et al., 1980Vertical value; LLK
8.46 ± 0.05PECondorelli, Fragala, et al., 1975Vertical value; LLK

Appearance energy determinations

Ion AE (eV) Other Products MethodReferenceComment
C3H3+18.0 ± 0.5?EIDillard and Kiser, 1969RDSH
C3H3ClTi+~19.5?EIDillard and Kiser, 1969RDSH
C5H5+13.0 ± 0.4?EIDillard and Kiser, 1969RDSH
C5H5ClTi+16.3 ± 0.3?EIDillard and Kiser, 1969RDSH
C5H5Cl2Ti+11.8 ± 0.2?EIDillard and Kiser, 1969RDSH
C10H10ClTi+10.8 ± 0.3ClEIDillard and Kiser, 1969RDSH
TiCl+21.6 ± 0.4?EIDillard and Kiser, 1969RDSH
TiCl2+19.7 ± 0.4?EIDillard and Kiser, 1969RDSH

References

Go To: Top, Gas phase thermochemistry data, Reaction thermochemistry data, Gas phase ion energetics data, Notes

Data compilation copyright by the U.S. Secretary of Commerce on behalf of the U.S.A. All rights reserved.

Martinho Simões
Martinho Simões, J.A., Private communication (see http://webbook.nist.gov/chemistry/om/). [all data]

Bruce and Tyler, 1985
Bruce, M.R.M.; Tyler, D.R., Organometallics, 1985, 4, 528. [all data]

Dias, Salema, et al., 1982
Dias, A.R.; Salema, M.S.; Martinho Simões, J.A., Organometallics, 1982, 1, 971. [all data]

Calhorda, Dias, et al., 1987
Calhorda, M.J.; Dias, A.R.; Minas da Piedade M.E.; Salema, M.S.; Martinho Simões J.A., Organometallics, 1987, 6, 734. [all data]

Dias, Salema, et al., 1981
Dias, A.R.; Salema, M.S.; Martinho Simões, J.A., J. Organometal. Chem., 1981, 222, 69. [all data]

Calhorda, Carrondo, et al., 1986
Calhorda, M.J.; Carrondo, M.A.A.F.C.T.; Dias, A.R.; Domingos, A.M.T.S.; Martinho Simões, J.A.; Teixeira, C., Organometallics, 1986, 5, 660. [all data]

Dias, Salema, et al., 1984
Dias, A.R.; Salema, M.S.; Martinho Simões, J.A., Rev. Port. Quím., 1984, 26, 227. [all data]

Calhorda, Gomes da Costa, et al., 1982
Calhorda, M.J.; Gomes da Costa, R.; Dias, A.R.; Martinho Simões, J.A., J. Chem. Soc., Dalton Trans., 1982, 2327.. [all data]

Dias, Dias, et al., 1987
Dias, A.R.; Dias, P.B.; Diogo, H.P.; Galvão, A.M.; Minas da Piedade, M.E.; Martinho Simões, J.A., Organometallics, 1987, 6, 1427. [all data]

Calado, Dias, et al., 1981
Calado, J.C.G.; Dias, A.R.; Salema, M.S.; Martinho Simões, J.A., J. Chem. Soc., Dalton Trans., 1981, 1174.. [all data]

Dillard and Kiser, 1969
Dillard, J.G.; Kiser, R.W., The formation of gaseous ions from dicyclopentadienyltitanium dichloride and dicyclopentadienylzirconium dichloride upon electron impact, J. Organometal. Chem., 1969, 16, 265. [all data]

Bohm, 1982
Bohm, M.C., The photoelectron spectra of bis(cyclopentadienyl)titanium derivatives - a green's function approach, Inorg. Chim. Acta, 1982, 62, 171. [all data]

Cauletti, Clark, et al., 1980
Cauletti, C.; Clark, J.P.; Green, J.C.; Jackson, S.E.; Fragala, I.L.; Ciliberto, E.; Coleman, A.W., Photoelectron spectra of bis-cyclopentadienyl metal dihalides, J. Electron Spectrosc. Relat. Phenom., 1980, 18, 61. [all data]

Condorelli, Fragala, et al., 1975
Condorelli, G.; Fragala, I.; Centineo, A.; Tondello, E., The electronic structure and photoelectron spectra of dichlorodi-π-cyclopentadienyl- titanium(IV), -zirconium(IV) and- hafnium(IV), J. Organomet. Chem., 1975, 87, 311. [all data]


Notes

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