Heat Capacity and Standard Thermodynamic Functions of Triphenylantimony Dimethacrylate over the Temperature Range from (0 to 400) K

被引:19
|
作者
Markin, Alexey V. [1 ]
Letyanina, Irina A. [1 ]
Ruchenin, Vitaly A. [1 ]
Smirnova, Natalia N. [1 ]
Gushchin, Alexey V. [1 ]
Shashkin, Dmitry V. [1 ]
机构
[1] Nizhnii Novgorod State Univ, Nizhnii Novgorod 603950, Russia
来源
关键词
Topology - Temperature - Calorimeters - Entropy - Fractal dimension - Melting - Differential scanning calorimetry;
D O I
10.1021/je200508x
中图分类号
O414.1 [热力学];
学科分类号
摘要
Heat capacities of triphenylantimony dimethacrylate Ph3Sb(O2CCMe=CH2)(2) were measured by precision adiabatic vacuum calorimetry over the temperature range from T = (6 to 335) K and by differential scanning calorimetry over the temperature range from T = (300 to 470) K The melting of the sample was observed within the above temperature range. The melting was accompanied by a compound decomposition. On the obtained data, the standard thermodynamic functions of molar heat capacity C-p,m(o), enthalpy H-o (T) - H-o (0), entropy S-o (T), and Gibbs energy G(o) (T) - H-o (0) of Ph3Sb(O2CCMe=CH2)(2) were calculated over the range from T = (0 to 400) K The low-temperature (T < 50 K) heat capacity dependence was analyzed on the basis of Debye's heat capacity theory of solids and its multifractal model, so the characteristic temperatures and the fractal dimension were determined, and some conclusions about the structure topology were made. The standard entropy of formation at T = 298.15 K of Ph3Sb(O2CCMe=CH2)(2)(cr) was calculated.
引用
收藏
页码:3657 / 3662
页数:6
相关论文
共 50 条
  • [21] Heat Capacity and Standard Thermodynamic Functions of a Fullerene Complex, ((CH3)3Si)12C60, over the Range from T → 0 K to T=350 K
    Markin, Alexey V.
    Ruchenin, Vitaly A.
    Smirnova, Natalia N.
    Gorina, Elena A.
    Titova, Sophia N.
    Domrachev, Georgy A.
    JOURNAL OF CHEMICAL AND ENGINEERING DATA, 2010, 55 (02): : 871 - 875
  • [22] LOW-TEMPERATURE HEAT CAPACITY AND STANDARD THERMODYNAMIC FUNCTIONS OF DECAFLUOROBIPHENYL
    PAUKOV, IE
    RAKHMENK.FS
    RUSSIAN JOURNAL OF PHYSICAL CHEMISTRY, 1971, 45 (05): : 738 - +
  • [23] Heat capacity and thermodynamic properties of GdPO4 in the temperature range 0-1600 K
    Gurevich, V. M.
    Ryumin, M. A.
    Tyurin, A. V.
    Komissarova, L. N.
    GEOCHEMISTRY INTERNATIONAL, 2012, 50 (08) : 702 - 710
  • [24] Heat capacity and thermodynamic properties of europium orthovanadate EuVO4 in the temperature range of 400–1010 K
    L. T. Denisova
    L. G. Chumilina
    N. V. Belousova
    V. M. Denisov
    Russian Journal of Physical Chemistry A, 2015, 89 : 1335 - 1338
  • [25] The thermodynamic functions of trimethylsilylethyleneimine in the temperature range 0-310 K
    Kulagina, TG
    Lebedev, BV
    RUSSIAN JOURNAL OF PHYSICAL CHEMISTRY, 1999, 73 (12): : 1909 - 1913
  • [26] Thermodynamic properties of pentaphenylantimony Ph5Sb over the range from T → 0 K to 400 K
    Smirnova, N. N.
    Letyanina, I. A.
    Larina, V. N.
    Markin, A. V.
    Sharutin, V. V.
    Senchurin, V. S.
    JOURNAL OF CHEMICAL THERMODYNAMICS, 2009, 41 (01): : 46 - 50
  • [27] HEAT-CAPACITY AND THERMODYNAMIC FUNCTIONS OF AMORPHIC BEH2 IN 0-300K RANGE
    SAMORUKOV, OP
    KOSTRYUK.VN
    SENIN, MD
    MIKHALEN.IP
    ZHURNAL FIZICHESKOI KHIMII, 1974, 48 (10): : 2437 - 2440
  • [28] SPECIFIC-HEAT CAPACITY AND THERMODYNAMIC FUNCTIONS OF YTTRIUM IN THE TEMPERATURE-RANGE FROM 5-K TO 300-K
    SIROTA, NN
    TOMILO, ZM
    DOKLADY AKADEMII NAUK BELARUSI, 1982, 26 (05): : 405 - 407
  • [29] HEAT-CAPACITY AND THERMODYNAMIC FUNCTIONS OF OSMIUM IN THE 5-316-K TEMPERATURE-RANGE
    NAUMOV, VN
    PAUKOV, IE
    RAMANAUSKAS, GR
    CHEKHOVSKOI, VY
    ZHURNAL FIZICHESKOI KHIMII, 1988, 62 (01): : 25 - 29
  • [30] Heat Capacity and Thermodynamic Properties of Europium Orthovanadate EuVO4 in the Temperature Range of 400-1010 K
    Denisova, L. T.
    Chumilina, L. G.
    Belousova, N. V.
    Denisov, V. M.
    RUSSIAN JOURNAL OF PHYSICAL CHEMISTRY A, 2015, 89 (08) : 1335 - 1338