Thermodynamics of dimer fullerene complex [(Me 3Si) 3C 60] 2 in the range from 0 ⩽ T/K ⩽ 480

In the present work, firstly the temperature dependence of heat capacity C p ,m ∘ = f ( T ) of the crystalline fullerene complex [(Me 3Si) 3C 60] 2 has been measured between T = (6 and 350) K and T = (330 and 480) K by precision adiabatic vacuum and dynamic calorimetry, respectively. The irreversibl...

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Published in:The Journal of chemical thermodynamics Vol. 39; no. 5; pp. 798 - 803
Main Authors: Markin, A.V., Smirnova, N.N., Bykova, T.A., Ruchenin, V.A., Titova, S.N., Gorina, E.A., Kalakutskaya, L.V., Ob’edkov, A.M., Ketkov, S.Yu, Domrachev, G.A.
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Published: Elsevier Ltd 01-05-2007
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Abstract In the present work, firstly the temperature dependence of heat capacity C p ,m ∘ = f ( T ) of the crystalline fullerene complex [(Me 3Si) 3C 60] 2 has been measured between T = (6 and 350) K and T = (330 and 480) K by precision adiabatic vacuum and dynamic calorimetry, respectively. The irreversible endothermic effect was detected in the temperature range from T = (400 to 466) K and its thermodynamic characteristics have been determined and analysed. This transformation was caused by the opening of a dimeric bond between fullerene fragments and the decomposition of the tested complex on heating. The experimental data were used for calculating the standard ( p ∘ = 0.1 MPa) thermodynamic functions C p ,m ∘ / R , Δ 0 T H m ∘ / RT , Δ 0 T S m ∘ / R and Φ m ∘ / R = Δ 0 T S m ∘ / R - Δ 0 T H m ∘ / RT (where R is gas constant) in the range 0 ⩽ T/K ⩽ 400. The value of the standard entropy of formation of the complex from simple substances at T = 298.15 K has been estimated.
AbstractList In the present work, firstly the temperature dependence of heat capacity C p ,m ∘ = f ( T ) of the crystalline fullerene complex [(Me 3Si) 3C 60] 2 has been measured between T = (6 and 350) K and T = (330 and 480) K by precision adiabatic vacuum and dynamic calorimetry, respectively. The irreversible endothermic effect was detected in the temperature range from T = (400 to 466) K and its thermodynamic characteristics have been determined and analysed. This transformation was caused by the opening of a dimeric bond between fullerene fragments and the decomposition of the tested complex on heating. The experimental data were used for calculating the standard ( p ∘ = 0.1 MPa) thermodynamic functions C p ,m ∘ / R , Δ 0 T H m ∘ / RT , Δ 0 T S m ∘ / R and Φ m ∘ / R = Δ 0 T S m ∘ / R - Δ 0 T H m ∘ / RT (where R is gas constant) in the range 0 ⩽ T/K ⩽ 400. The value of the standard entropy of formation of the complex from simple substances at T = 298.15 K has been estimated.
Author Ob’edkov, A.M.
Gorina, E.A.
Smirnova, N.N.
Bykova, T.A.
Titova, S.N.
Ketkov, S.Yu
Ruchenin, V.A.
Domrachev, G.A.
Kalakutskaya, L.V.
Markin, A.V.
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  surname: Domrachev
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Keywords Fullerene complex[(Me 3Si) 3C 60] 2
Heat capacity
Standard thermodynamic functions
Microcalorimetry
Thermodynamic characteristics of transformation
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Snippet In the present work, firstly the temperature dependence of heat capacity C p ,m ∘ = f ( T ) of the crystalline fullerene complex [(Me 3Si) 3C 60] 2 has been...
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SubjectTerms Fullerene complex[(Me 3Si) 3C 60] 2
Heat capacity
Microcalorimetry
Standard thermodynamic functions
Thermodynamic characteristics of transformation
Title Thermodynamics of dimer fullerene complex [(Me 3Si) 3C 60] 2 in the range from 0 ⩽ T/K ⩽ 480
URI https://dx.doi.org/10.1016/j.jct.2006.10.002
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