论文标题
水沉积物在亲水表面上的微观结构
Microstructure of water sediments on hydrophilic surfaces
论文作者
论文摘要
在现代世界中,自然科学研究思想的重点主要转移到分子水平,包括水研究。根据分子动力学,中子和X射线散射的数据,水被视为相互作用的H2O分子及其簇的混合物。在这种情况下,与真实水的组成,其微观结构和行为相关的大量信息却丢失了。在这项工作中,我们研究了水在使用光学显微镜过程中与玻璃表面相互作用期间的结构和动力学。我们观察到一系列蒸馏水相互关联的相变及其微分散相的相互关联相变的全景图片 - 氯化钠微晶体,周围环绕着一层厚厚的水合液晶水。将载玻片在水中孵育2天,伴随着微分散相的粘附到玻璃表面。在从培养皿中蒸馏水的自由蒸发过程中,观察到了水合壳的侵蚀,NaCl微晶的溶解以及进一步的重结晶,形成了大的整体晶体和非干燥水的痕迹。但是,仍然有一些问题尚未有明确的答案。作者希望继续与有兴趣的同事合作进行研究。
In the modern world, the focus of natural science research thought has shifted mainly to the molecular level, including the study of water. Water is considered as a mixture of interacting H2O molecules and their clusters based on the data of molecular dynamics, neutron and X-ray scattering. In this case, a huge layer of information is lost related to the composition of real water, its microstructure and behavior. In this work, we studied the structure and dynamics of water during its interaction with glass surfaces during drying using optical microscopy. We observed a panoramic picture of a cascade of interrelated phase transitions of distilled water and its microdispersed phase - sodium chloride microcrystals surrounded by a thick layer of hydrate liquid crystal water. Incubation of a glass slide in water for 2 days was accompanied by adhesion of the microdisperse phase to the glass surface. During the free evaporation of distilled water from a Petri dish, erosion of hydration shells, dissolution of NaCl microcrystals, and further recrystallization with the formation of large monolithic crystals and traces of non-drying water were observed. However, there are still questions that do not yet have clear answers. The authors hope to continue research in collaboration with interested colleagues.