Kim Jungpil
Carbon & Light Materials Group, Korea Institute of Industrial Technology (KITECH), 222 Palbok-ro, Deokjin-gu, Jeonju 54853, Republic of Korea.
ACS Omega. 2024 Oct 15;9(43):43956-43962. doi: 10.1021/acsomega.4c07966. eCollection 2024 Oct 29.
This study explores the electronic and vibrational properties of armchair coronoids (ACs), a unique class of polycyclic aromatic hydrocarbons with varying molecular and cavity sizes. Through density functional theory simulations, we investigated the X-ray photoelectron spectroscopy (XPS) and Raman spectra of 222, C114, C42, and their derivatives with different cavity sizes. The results reveal that band gaps and electronic properties of ACs can be precisely tuned by adjusting the molecular and cavity dimensions. XPS spectra demonstrated shifts in binding energy correlating with bandgap variations, while Raman spectra exhibited distinct C-C stretching and breathing modes. Notably, the introduction of cavities led to shifts in the breathing mode band, providing insights into the structural identification of ACs through Raman spectroscopy. The findings suggest that combining XPS and Raman spectroscopy can effectively characterize ACs, offering a comprehensive understanding of their structure-property relationships. This research lays the groundwork for future experimental and theoretical studies on the potential applications of ACs in electronic materials.
本研究探索了扶手椅状冠状化合物(ACs)的电子和振动性质,ACs是一类独特的多环芳烃,具有不同的分子和空腔尺寸。通过密度泛函理论模拟,我们研究了222、C114、C42及其具有不同空腔尺寸的衍生物的X射线光电子能谱(XPS)和拉曼光谱。结果表明,通过调整分子和空腔尺寸,可以精确调节ACs的带隙和电子性质。XPS光谱显示结合能的变化与带隙变化相关,而拉曼光谱表现出明显的C-C伸缩和呼吸模式。值得注意的是,空腔的引入导致呼吸模式带发生位移,这为通过拉曼光谱对ACs进行结构鉴定提供了见解。研究结果表明,结合XPS和拉曼光谱可以有效地表征ACs,全面了解其结构-性质关系。本研究为未来关于ACs在电子材料中潜在应用的实验和理论研究奠定了基础。