Costa José C S, Campos Ricardo M, Lima Luís M S S, da Silva M A V Ribeiro, Santos Luís M N B F
CIQUP, Centro de Investigação em Química da Universidade do Porto, Department of Chemistry and Biochemistry, Faculty of Science, University of Porto, R. Campo Alegre, P-4169-007 Porto, Portugal.
J Phys Chem A. 2021 May 6;125(17):3696-3709. doi: 10.1021/acs.jpca.1c01978. Epub 2021 Apr 23.
The thermodynamic properties and band gap energies were evaluated for six ortho- and peri-fused polycyclic aromatic hydrocarbons (PAHs): triphenylene; benzo[]pyrene; benzo[]pyrene; perylene; benzo[]perylene; coronene. The standard molar enthalpies of formation in the crystalline state and the standard molar enthalpies of sublimation were measured by high precision combustion calorimetry and Knudsen effusion methodology, respectively. The combination of the molar enthalpies of formation in the crystalline state with the respective enthalpies of sublimation was used to evaluate the energetics of the progressive peri-fusion of the aromatic moieties from triphenylene to coronene aiming to investigate the hypothetical superaromaticity character of coronene. The linear trend of the enthalpy of formation in crystalline and gaseous phases in the series (from benzo[]pyrene to coronene) is an irrefutable indication of a non-superaromaticity character of coronene. High accurate thermodynamic properties of sublimation (volatility, enthalpy, and entropy of sublimation) were derived by the measurement of vapor pressures as a function of temperature, using a Knudsen/quartz crystal effusion methodology. Furthermore, the π-electronic conjugation of these compounds was explored by evaluation of the optical band gaps along with this series of compounds. The morphology of perylene, benzo[]perylene, and coronene thin films, deposited by physical vapor deposition onto transparent conductive oxide substrates (ITO and FTO), was used to analyze the nucleation and growth mechanisms. The morphologies observed were found to be related to the cohesive energy and entropy of the bulk.
对六种邻位和周边稠合的多环芳烃(PAHs)进行了热力学性质和带隙能量评估:三亚苯;苯并[]芘;苯并[]芘;苝;苯并[]苝;蔻。分别通过高精度燃烧量热法和克努森 effusion 方法测量了晶体状态下的标准摩尔生成焓和升华标准摩尔焓。晶体状态下的摩尔生成焓与各自的升华焓相结合,用于评估从三亚苯到蔻的芳香部分逐步周边稠合的能量学,旨在研究蔻的假设超芳香性特征。该系列(从苯并[]芘到蔻)中晶体相和气态相生成焓的线性趋势是蔻非超芳香性特征的无可辩驳的迹象。通过使用克努森/石英晶体 effusion 方法测量蒸气压随温度的变化,得出了升华的高精度热力学性质(升华挥发性、焓和熵)。此外,通过评估该系列化合物的光学带隙来探索这些化合物的π电子共轭。通过物理气相沉积在透明导电氧化物衬底(ITO 和 FTO)上沉积的苝、苯并[]苝和蔻薄膜的形态,用于分析成核和生长机制。观察到的形态与本体的内聚能和熵有关。