Department of Chemistry, Pusan National University, Busan 46241, Korea.
Department of Applied Chemistry, Kookmin University, Seoul 02707, Korea.
Int J Mol Sci. 2022 Apr 10;23(8):4175. doi: 10.3390/ijms23084175.
Investigating molecules in the gas phase is the only way to discover their intrinsic molecular properties; however, it is challenging to produce the gaseous phase of large-molecule chemicals. Thermal evaporation is typically used to convert molecules into gases, but it is still challenging to study ionic molecules in solutions in the gas phase. Electrospray ionization is one of the best methods to generate molecules in the gas phase, and it is uniquely capable of studying large biomolecules, including proteins. However, the molecular temperature required to study the spectroscopic properties of the molecules is very high. In this study, we developed a new, simple evaporation method using an ultrasonic nebulizer to obtain gas-phase molecules. Using this new equipment, we observed OH anions and their water clusters in the gas phase and obtained their photoelectron spectra. We observed that the vertical electron-detachment energy (VDE) of OH was 1.90 ± 0.05 eV and the VDEs of its water clusters and OH (HO) ( = 1-2) decreased to 1.50 ± 0.05 eV ( = 1) and 1.30 ± 0.05 eV ( = 2), respectively.
研究气相中的分子是发现其固有分子性质的唯一方法;然而,产生大分子量化学物质的气相是具有挑战性的。热蒸发通常用于将分子转化为气体,但在气相中研究离子分子仍然具有挑战性。电喷雾电离是生成气相分子的最佳方法之一,它能够独特地研究包括蛋白质在内的大生物分子。然而,研究分子光谱性质所需的分子温度非常高。在这项研究中,我们开发了一种使用超声雾化器的新型简单蒸发方法来获得气相分子。使用这种新设备,我们观察到气相中的 OH 阴离子及其水团簇,并获得了它们的光电子能谱。我们观察到 OH 的垂直电子离解能 (VDE) 为 1.90 ± 0.05 eV,其水团簇和 OH (HO) ( = 1-2) 的 VDE 分别降低至 1.50 ± 0.05 eV ( = 1) 和 1.30 ± 0.05 eV ( = 2)。