Gagkayeva Z V, Gorshunov B P, Kachesov A Ye, Motovilov K A
Center for Photonics and 2D Materials, Moscow Institute of Physics and Technology (National Research University), 9 Institutskiy per., Dolgoprudny, Moscow Region 141701, Russian Federation.
Phys Rev E. 2022 Apr;105(4-1):044409. doi: 10.1103/PhysRevE.105.044409.
Recent publications on spectroscopy of water layers in water bridge structures revealed a significant enhancement of the proton mobility and the dielectric contribution of translational vibrations of water molecules in the interfacial layers compared to bulk water. Herewith, the results of long-term studies of proton dynamics in solid-state acids have shown that proton mobility increases significantly with the predominance of hydronium, but not Zundel, cations in the aqueous phase. In the present work, in the light of these data, we reanalyzed our previously published results on broadband dielectric spectroscopy of bovine heart cytochrome c, bovine serum albumin, and the extracellular matrix and filaments of Shewanella oneidensis MR-1. We revealed that, just as in water bridges, an increase in electrical conductivity in these systems correlates with an increase in the dielectric contribution of water molecular translational vibrations. In addition, the appearance of spectral signatures of the hydronium cations was observed only in those cases when the system revealed noticeable electrical conductivity due to delocalized charge carriers.
最近有关水桥结构中水分子层光谱的出版物表明,与体相水相比,界面层中质子的迁移率和水分子平移振动的介电贡献显著增强。在此基础上,对固态酸中质子动力学的长期研究结果表明,质子迁移率随着水合氢离子而不是 Zundel 阳离子在水相中的优势显著增加。在本工作中,根据这些数据,我们重新分析了先前关于牛心细胞色素 c、牛血清白蛋白以及希瓦氏菌属 oneidensis MR-1 的细胞外基质和丝的宽频介电光谱的研究结果。我们发现,就像在水桥中一样,这些系统的电导率增加与水分子平移振动的介电贡献增加相关。此外,只有在系统由于离域电荷载流子而表现出明显的电导率时,才观察到水合氢离子的光谱特征。