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首页> 外文期刊>The Journal of Chemical Thermodynamics >Vapor pressures and sublimation enthalpies of seven heteroatomic aromatic hydrocarbons measured using the Knudsen effusion technique
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Vapor pressures and sublimation enthalpies of seven heteroatomic aromatic hydrocarbons measured using the Knudsen effusion technique

机译:使用Knudsen渗流技术测量的七个杂原子芳烃的蒸气压和升华焓

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The vapor pressures of seven heteroatom-containing cyclic aromatic hydrocarbons, ranging in molecular weight from (168.19 to 208.21) g · mol~(-1) were measured over the temperature range of (301 to 486) K using the isothermal Knudsen effusion technique. The compounds measured include: anthraquinone, 9-fluorenone, 9-fluorenone oxime, phenoxazine, phenoxathiin, and 9H-pyrido[3,4-b]indole. These solid-state sublimation measurements provided values that are compared to vapor pressures of parent aromatic compounds (anthracene and fluorene) and to others with substituent groups in order to examine the effects of alcohol, ketone, pyridine, and pyrrole functionality on this property. The enthalpies and entropies of sublimation for each compound were determined from the Clausius-Clapeyron equation. Though there is no consistent trend in terms of the effects of substitutions on changes in the enthalpy or entropy of sublimation, we note that the prevalence of enthalpic or entropic driving forces on vapor pressure depend on molecule-specific factors and not merely molecular weight of the substituents.
机译:使用等温Knudsen渗流技术,在(301至486)K的温度范围内,测量了七个分子量为(168.19至208.21)g·mol〜(-1)的含杂原子的环状芳烃的蒸气压。所测量的化合物包括:蒽醌,9-芴酮,9-芴酮肟,苯恶嗪,苯恶那汀和9H-吡啶并[3,4-b]吲哚。这些固态升华测量提供的值与母体芳香族化合物(蒽和芴)以及具有取代基的其他芳香族化合物的蒸气压进行比较,以便研究醇,酮,吡啶和吡咯官能度对该特性的影响。根据Clausius-Clapeyron方程确定每种化合物的升华焓和熵。尽管就取代对升华焓或熵的变化的影响而言,没有一致的趋势,但我们注意到,焓或熵驱动力对蒸汽压的普遍性取决于分子特异性因素,而不仅取决于分子的分子量。取代基。

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