Nishikawa Kotomi, Tanaka Hikaru, Kuwahata Kazuaki, Tachikawa Masanori, Udagawa Taro
Department of Chemistry and Biomolecular Science, Faculty of Engineering, Gifu University, Yanagido 1-1, Gifu 501-1193, Japan.
Tokyo Tech Academy for Convergence of Materials and Informatics, Tokyo Institute of Technology, 2-12-1 Ookayama, Meguro-ku, Tokyo 152-8550, Japan.
Phys Chem Chem Phys. 2024 Sep 25;26(37):24364-24369. doi: 10.1039/d4cp02047b.
We focus on the unique aspects of biuret and biguanide, which form six-membered ring structures intramolecular hydrogen bonds. The proton donor and acceptor atoms differ between biuret and biguanide, leading to varying energy barrier heights for proton transfer. We performed path integral molecular dynamics (PIMD) simulations for biuret and biguanide to investigate the correlation between proton transfer and the degree of the delocalization of π-electrons in the six-membered ring framework structure. The results indicate that the π-electrons in the framework structure are delocalized regardless of the ease of intramolecular proton transfer.
我们关注缩二脲和双胍的独特方面,它们形成六元环结构和分子内氢键。缩二脲和双胍之间的质子供体和受体原子不同,导致质子转移的能垒高度不同。我们对缩二脲和双胍进行了路径积分分子动力学(PIMD)模拟,以研究质子转移与六元环骨架结构中π电子离域程度之间的相关性。结果表明,无论分子内质子转移的难易程度如何,骨架结构中的π电子都是离域的。