5 research outputs found

    Calorimetric Study of Triphenylbismuth Dimethacrylate Ph<sub>3</sub>Bi(O<sub>2</sub>CCMeî—»CH<sub>2</sub>)<sub>2</sub>

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    In the present research, the heat capacities of triphenylbismuth dimethacrylate Ph<sub>3</sub>Bi­(O<sub>2</sub>CCMeCH<sub>2</sub>)<sub>2</sub> were measured between <i>T</i> = 5.3 and 330 K with the precision adiabatic vacuum calorimeter and from <i>T</i> = 310 to 420 K with the differential scanning calorimeter. There revealed a reproducible anomaly from 150 to 170 K caused by structural changes in the crystal lattice, and intensive exothermic transition over the range from <i>T</i> = 385 to 420 K caused by the reductive decomposition with the polymerization of the sample under study. The experimental results were used to calculate the standard (<i>p</i> = 0.1 MPa) thermodynamic functions (heat capacity <i>C</i><sub>p,m</sub><sup>o</sup>, enthalpy <i>H</i><sub>m</sub><sup>o</sup>(<i>T</i>) – <i>H</i><sub>m</sub><sup>o</sup>(0), entropy <i>S</i><sub>m</sub><sup>o</sup>(<i>T</i>), and Gibbs energy Φ<sub>m</sub><sup>o</sup>(<i>T</i>) of crystalline triphenylbismuth dimethacrylate from <i>T</i> → 0 to 385 K. The standard entropy of formation at <i>T</i> = 298.15 K was calculated for the compound under study in the crystalline state. Obtained for Ph<sub>3</sub>Bi­(O<sub>2</sub>CCMeCH<sub>2</sub>)<sub>2</sub> results were compared with ones for Ph<sub>3</sub>Sb­(O<sub>2</sub>CCMeCH<sub>2</sub>)<sub>2</sub>
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