Shioya Nobutaka, Fang Tao, Fujii Masamichi, Fujiwara Ryoi, Hayashi Hironobu, Yamada Hiroko, Hasegawa Takeshi
Institute for Chemical Research, Kyoto University, Gokasho, Uji, Kyoto 611-0011, Japan.
Center for Basic Research on Materials, National Institute for Materials Science (NIMS), 1-2-1 Sengen, Tsukuba, Ibaraki 305-0047, Japan.
Langmuir. 2024 Jan 9;40(1):1137-1142. doi: 10.1021/acs.langmuir.3c03594. Epub 2023 Dec 27.
On-surface reactions are rapidly gaining attention as a chemical technique for synthesizing organic functional materials, such as graphene nanoribbons and molecular semiconductors. Quantitative analysis of such reactions is essential for fabricating high-quality film structures, but until our recent work using p-polarized multiple-angle incidence resolution spectrometry (pMAIRS), no analytical technique is available to quantify the reaction rate. In the present study, the pMAIRS technique is employed to analyze the photochemical reaction from 6,13-dihydro-6,13-ethanopentacene-15,16-dione to pentacene in thin films. The spectral analysis on a pMAIRS principle readily reveals the photoconversion rate accurately without other complicated calculations. Thus, this study underlines that the pMAIRS technique is a powerful tool for quantitative analysis of on-surface reactions, as well as molecular orientation.
作为一种用于合成有机功能材料(如石墨烯纳米带和分子半导体)的化学技术,表面反应正迅速受到关注。对于制造高质量薄膜结构而言,对此类反应进行定量分析至关重要,但在我们最近使用p偏振多角度入射分辨率光谱法(pMAIRS)开展工作之前,尚无可用的分析技术来量化反应速率。在本研究中,采用pMAIRS技术分析薄膜中6,13-二氢-6,13-亚乙基并五苯-15,16-二酮到并五苯的光化学反应。基于pMAIRS原理的光谱分析无需其他复杂计算就能轻松准确地揭示光转化率。因此,本研究强调pMAIRS技术是用于表面反应定量分析以及分子取向分析的有力工具。