Bolmatenkov Dmitrii N, Nizamov Ilyas I, Sokolov Andrey A, Notfullin Airat A, Solomonov Boris N, Yagofarov Mikhail I
Department of Physical Chemistry, Kazan Federal University, Kremlevskaya Str. 18, 420008 Kazan, Russia.
Molecules. 2025 Jun 30;30(13):2814. doi: 10.3390/molecules30132814.
In this work, detailed information on the phase-transition thermodynamics of the analgesic and antipyretic drug phenazone, also known as antipyrine, is reported. It was found that the compound forms two polymorphs. Fusion thermodynamics of both forms was studied between 298.15 K and using the combination of differential scanning calorimetry and solution calorimetry. The vapor pressures above crystalline and liquid phenazone were measured for the first time using thermogravimetry-fast scanning calorimetry technique. These studies were complemented by computation of the ideal gas entropy and heat capacity and by measurements of the condensed phase heat capacities. On the basis of experiments performed, we derived sublimation and vaporization enthalpies and vapor pressure above liquid and both crystalline modifications of phenazone in a wide range of temperatures.
在本研究中,报道了关于止痛和解热药物非那宗(也称为安替比林)的相变热力学的详细信息。发现该化合物形成两种多晶型物。在298.15 K至[此处原文缺失温度范围上限值]之间,使用差示扫描量热法和溶液量热法相结合的方法研究了两种晶型的熔融热力学。首次使用热重-快速扫描量热法技术测量了结晶态和液态非那宗上方的蒸气压。这些研究通过理想气体熵和热容的计算以及凝聚相热容的测量得到补充。基于所进行的实验,我们得出了非那宗在很宽温度范围内的升华焓、汽化焓以及液态和两种结晶变体上方的蒸气压。