Ladd-Parada Marjorie, Li Hailong, Karina Aigerim, Kim Kyung Hwan, Perakis Fivos, Reiser Mario, Dallari Francesco, Striker Nele, Sprung Michael, Westermeier Fabian, Grübel Gerhard, Nilsson Anders, Lehmkühler Felix, Amann-Winkel Katrin
Department of Physics, Stockholm University Roslagstullsbacken 21 10691 Stockholm Sweden
Max-Planck-Institute for Polymer Research Ackermannweg 10 55128 Mainz Germany.
Environ Sci Atmos. 2022 Sep 13;2(6):1314-1323. doi: 10.1039/d2ea00052k. eCollection 2022 Nov 10.
Amorphous solid water plays an important role in our overall understanding of water's phase diagram. X-ray scattering is an important tool for characterising the different states of water, and modern storage ring and XFEL facilities have opened up new pathways to simultaneously study structure and dynamics. Here, X-ray photon correlation spectroscopy (XPCS) was used to study the dynamics of high-density amorphous (HDA) ice upon heating. We follow the structural transition from HDA to low-density amorphous (LDA) ice, by using wide-angle X-ray scattering (WAXS), for different heating rates. We used a new type of sample preparation, which allowed us to study μm-sized ice layers rather than powdered bulk samples. The study focuses on the non-equilibrium dynamics during fast heating, spontaneous transformation and crystallization. Performing the XPCS study at ultra-small angle (USAXS) geometry allows us to characterize the transition dynamics at length scales ranging from 60 nm-800 nm. For the HDA-LDA transition we observe a clear separation in three dynamical regimes, which show different dynamical crossovers at different length scales. The crystallization from LDA, instead, is observed to appear homogenously throughout the studied length scales.
非晶态固态水在我们对水相图的整体理解中起着重要作用。X射线散射是表征水不同状态的重要工具,现代储存环和X射线自由电子激光(XFEL)设施开辟了同时研究结构和动力学的新途径。在此,我们使用X射线光子相关光谱(XPCS)来研究高密度非晶(HDA)冰在加热时的动力学。通过使用广角X射线散射(WAXS),我们追踪了在不同加热速率下HDA向低密度非晶(LDA)冰的结构转变。我们采用了一种新型的样品制备方法,这使我们能够研究微米尺寸的冰层,而不是粉末状的块状样品。该研究聚焦于快速加热、自发转变和结晶过程中的非平衡动力学。在超小角(USAXS)几何条件下进行XPCS研究,使我们能够在60纳米至800纳米的长度尺度上表征转变动力学。对于HDA-LDA转变,我们观察到在三种动力学区域中有明显的区分,它们在不同长度尺度上表现出不同的动力学转变。相反,观察到LDA的结晶在整个研究的长度尺度上均匀出现。