Zhu Hanlin, Deng Xinyu, Yakovlev Vladislav V, Zhang Delong
Zhejiang Key Laboratory of Micro-nano Quantum Chips and Quantum Control, School of Physics, Zhejiang University Hangzhou Zhejiang 310027 China
MOE Frontier Science Center for Brain Science & Brain-Machine Integration, Zhejiang University Hangzhou Zhejiang 310027 China.
Chem Sci. 2024 Jul 31;15(35):14344-51. doi: 10.1039/d4sc03985h.
Hydrogen bond (HB) networks are essential for stabilizing molecular structures in solution and govern the solubility and functionality of molecules in an aqueous environment. HBs are important in biological processes such as enzyme-substrate interactions, protein folding, and DNA replication. However, the exact role of weakly polarized C-H bonds as HB proton donors in solution, such as CH/ HBs, remains mostly unknown. Here, we employ a novel approach focusing on vibrational dephasing to investigate the coherence relaxation of induced dipoles in C-H bonds within CH/ HB networks, utilizing time-resolved coherent anti-Stokes Raman scattering (T-CARS) spectroscopy. Using a representative binary system of dimethyl sulfoxide (DMSO)-water, known for its C-H backboned HB system (, C-H⋯S), we observed an increase in the dephasing time of the C-H bending mode with increasing water content until a percolation threshold at a 6 : 1 water : DMSO molar ratio, where the trend is reversed. These results provide compelling evidence for the existence of C-H⋯S structures and underscore the presence of a percolation effect, suggesting a critical threshold where long-range connectivity is disputed.
氢键(HB)网络对于稳定溶液中的分子结构至关重要,并决定分子在水性环境中的溶解性和功能。氢键在诸如酶 - 底物相互作用、蛋白质折叠和DNA复制等生物过程中起着重要作用。然而,弱极化的C - H键作为溶液中氢键质子供体的确切作用,如C - H/氢键,仍然大多未知。在这里,我们采用一种专注于振动退相的新方法,利用时间分辨相干反斯托克斯拉曼散射(T - CARS)光谱来研究C - H/氢键网络中C - H键内感应偶极子的相干弛豫。使用以其C - H主链氢键系统(C - H⋯S)而闻名的代表性二元体系二甲亚砜(DMSO) - 水,我们观察到随着水含量的增加,C - H弯曲模式的退相时间增加,直到在水与DMSO摩尔比为6∶1时达到渗流阈值,此时趋势反转。这些结果为C - H⋯S结构的存在提供了令人信服的证据,并强调了渗流效应的存在,表明存在一个长程连通性受到质疑的临界阈值。