Fu Jinxia, Rice James W, Suuberg Eric M
Brown University Department of Chemistry, Providence, RI USA 02912.
Fluid Phase Equilib. 2010 Nov 25;298(2):219-224. doi: 10.1016/j.fluid.2010.07.023.
The present work concerns the thermochemical and vapor pressure behavior of the pyrene + 9,10-dibromoanthracene system. The phase diagram of the system has been studied using the thaw melt method and the results show the formation of non-eutectic multiphase mixtures. The temperatures of crystallization, and enthalpies of fusion and crystallization of the system were determined by differential scanning calorimetry. The system behavior can be divided into 5 regions. The X-ray diffraction results also indicated the existence of multiple phase characteristics. The solid-vapor equilibrium studies showed that for mixtures with high mole fractions of pyrene, two different preferred states exist that determine the vapor pressure. For those mixtures with moderate and low mole fractions of pyrene, only one preferred state exists that determines vapor pressure behavior. It was also demonstrated that the vapor pressure of the mixtures is independent of the mixture preparation technique.
本研究涉及芘 + 9,10 - 二溴蒽体系的热化学和蒸气压行为。采用解冻熔融法研究了该体系的相图,结果表明形成了非共晶多相混合物。通过差示扫描量热法测定了该体系的结晶温度、熔化焓和结晶焓。该体系的行为可分为5个区域。X射线衍射结果也表明存在多相特征。固 - 气平衡研究表明,对于芘摩尔分数较高的混合物,存在两种不同的优先状态决定蒸气压。对于芘摩尔分数中等和较低的混合物,仅存在一种优先状态决定蒸气压行为。还证明了混合物的蒸气压与混合物制备技术无关。