copper chloride


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.

Quantity Value Units Method Reference Comment
Δfgas91.09kJ/molReviewChase, 1998Data last reviewed in March, 1966
Quantity Value Units Method Reference Comment
gas,1 bar237.20J/mol*KReviewChase, 1998Data last reviewed in March, 1966

Gas Phase Heat Capacity (Shomate Equation)

Cp° = A + B*t + C*t2 + D*t3 + E/t2
H° − H°298.15= A*t + B*t2/2 + C*t3/3 + D*t4/4 − E/t + F − H
S° = A*ln(t) + B*t + C*t2/2 + D*t3/3 − E/(2*t2) + G
    Cp = heat capacity (J/mol*K)
    H° = standard enthalpy (kJ/mol)
    S° = standard entropy (J/mol*K)
    t = temperature (K) / 1000.

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Temperature (K) 3000. to 6000.
A 37.22873
B 0.626977
C -0.043033
D 0.003669
E -0.194050
F 79.30772
G 280.9761
H 91.08610
ReferenceChase, 1998
Comment Data last reviewed in March, 1966

Condensed 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.

Quantity Value Units Method Reference Comment
Δfliquid-131.18kJ/molReviewChase, 1998Data last reviewed in March, 1966
Quantity Value Units Method Reference Comment
liquid,1 bar93.75J/mol*KReviewChase, 1998Data last reviewed in March, 1966
Quantity Value Units Method Reference Comment
Δfsolid-138.07kJ/molReviewChase, 1998Data last reviewed in March, 1966
Quantity Value Units Method Reference Comment
solid87.04J/mol*KReviewChase, 1998Data last reviewed in March, 1966

Liquid Phase Heat Capacity (Shomate Equation)

Cp° = A + B*t + C*t2 + D*t3 + E/t2
H° − H°298.15= A*t + B*t2/2 + C*t3/3 + D*t4/4 − E/t + F − H
S° = A*ln(t) + B*t + C*t2/2 + D*t3/3 − E/(2*t2) + G
    Cp = heat capacity (J/mol*K)
    H° = standard enthalpy (kJ/mol)
    S° = standard entropy (J/mol*K)
    t = temperature (K) / 1000.

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Temperature (K) 703. to 3000.
A 66.94400
B -3.699628×10-10
C 2.166748×10-10
D -3.900460×10-11
E -9.813196×10-12
F -151.1374
G 174.7653
H -131.1780
ReferenceChase, 1998
Comment Data last reviewed in March, 1966

Solid Phase Heat Capacity (Shomate Equation)

Cp° = A + B*t + C*t2 + D*t3 + E/t2
H° − H°298.15= A*t + B*t2/2 + C*t3/3 + D*t4/4 − E/t + F − H
S° = A*ln(t) + B*t + C*t2/2 + D*t3/3 − E/(2*t2) + G
    Cp = heat capacity (J/mol*K)
    H° = standard enthalpy (kJ/mol)
    S° = standard entropy (J/mol*K)
    t = temperature (K) / 1000.

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Temperature (K) 298. to 703.
A 75.27100
B -26.83212
C 25.69156
D -7.357982
E -1.847747
F -165.7299
G 174.6644
H -138.0720
ReferenceChase, 1998
Comment Data last reviewed in March, 1966

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:
LLK - Sharon G. Lias, Rhoda D. Levin, and Sherif A. Kafafi
RDSH - Henry M. Rosenstock, Keith Draxl, Bruce W. Steiner, and John T. Herron

View reactions leading to ClCu+ (ion structure unspecified)

Ionization energy determinations

IE (eV) Method Reference Comment
10.7EIBloom and Williams, 1981LLK
10.7 ± 0.3EIGuido, Gigli, et al., 1972LLK
10.7 ± 0.3EIHildenbrand, 1970RDSH

References

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

Chase, 1998
Chase, M.W., Jr., NIST-JANAF Themochemical Tables, Fourth Edition, J. Phys. Chem. Ref. Data, Monograph 9, 1998, 1-1951. [all data]

Bloom and Williams, 1981
Bloom, H.; Williams, D.J., A mass spectrometric study of the vapors above the molten salt systems LiCl-CuCl, LiBr-CuBr, and NaI-CuI, J. Chem. Phys., 1981, 75, 4636. [all data]

Guido, Gigli, et al., 1972
Guido, M.; Gigli, G.; Balducci, G., Dissociation energy of CuCl and Cu2Cl2 gaseous molecules, J. Chem. Phys., 1972, 57, 3731. [all data]

Hildenbrand, 1970
Hildenbrand, D.L., Dissociation energies and chemical bonding in the alkaline-earth chlorides from mass spectrometric studies, J. Chem. Phys., 1970, 52, 5751. [all data]


Notes

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