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Mean Inner Potential of Liquid Water
- Source :
- Yesibolati , M N , Lagana , S , Sun , H , Beleggia , M , Kathmann , S M , Kasama , T & Mølhave , K 2020 , ' Mean Inner Potential of Liquid Water ' , Physical Review Letters , vol. 124 , no. 6 , 065502 .
- Publication Year :
- 2020
-
Abstract
- Improving our experimental and theoretical knowledge of electric potentials at liquid-solid boundaries is essential to achieve a deeper understanding of the driving forces behind interfacial processes. Electron holography has proved successful in probing solid-solid interfaces but requires knowledge of the materials’ mean inner potential (MIP, V0), which is a fundamental bulk material property. Combining off-axis electron holography with liquid phase transmission electron microscopy (LPTEM), we provide the first quantitative MIP determination of liquid water V0 ¼ þ4.48 0.19 V. This value is larger than most theoretical predictions, and to explain the disagreement we assess the dominant factors needed in quantum simulations of liquid water. A precise MIP lays the foundations for nanoscale holographic potential measurements in liquids, and provides a benchmark to improve quantum mechanical descriptions of aqueous systems and their interfaces in, e.g., electrochemistry, solvation processes, and spectroscopy.
Details
- Database :
- OAIster
- Journal :
- Yesibolati , M N , Lagana , S , Sun , H , Beleggia , M , Kathmann , S M , Kasama , T & Mølhave , K 2020 , ' Mean Inner Potential of Liquid Water ' , Physical Review Letters , vol. 124 , no. 6 , 065502 .
- Notes :
- application/pdf, English
- Publication Type :
- Electronic Resource
- Accession number :
- edsoai.on1178793354
- Document Type :
- Electronic Resource