The physics and chemistry of a charged interface are governed by the structure of the electrical double layer (EDL). Determination of the interfacial water thickness (diw) of the charged interface is crucial to quantitatively describe the EDL structure, but it can be utilized with very scarce experimental methods. Here, we propose and verify that the vibrational relaxation time (T1) of the OH stretching mode at 3200 cm–1, obtained by time-resolved sum frequency generation vibrational spectroscopy with ssp polarizations, provides an effective tool to determine diw. By investigating the T1 values at the SiO2/NaCl solution interface, we established a time-space (T1–diw) relationship. We find that water has a T1 lifetime of ≥0.5 ps for diw ≤ 3 ...
The vibrational sum frequency generation (VSFG) spectrum of the water liquid–vapor (LV) interface is...
Our work investigates theoretical approximations to the interface specific sum frequency generation ...
Vibrational sum-frequency generation (SFG) spectroscopy is demonstrated as a fast method to quantify...
We report vibrational lifetime measurements of the OH stretch vibration of interfacial water in cont...
200 pagesAqueous interfaces are ubiquitous across atmospheric, biological, and technological process...
The properties and behavior of water at interfaces is important in many fields. However, it is not c...
200 pagesAqueous interfaces are ubiquitous across atmospheric, biological, and technological process...
The effect of the surface electric field on the ultrafast vibrational dynamics of interfacial water ...
The water bending mode provides a powerful probe of the microscopic structure of bulk aqueous system...
In this issue of Chem, Paesani and co-workers present a computational analysis of sum-frequency gene...
In this issue of Chem, Paesani and co-workers present a computational analysis of sum-frequency gene...
The electric double layer governs the processes of all charged surfaces in aqueous solutions; howeve...
The structure of interfacial water determines atmospheric chemistry, wetting properties of materials...
Knowledge of the interfacial water structure is essential for a basic understanding of the many envi...
The air-water interface is perhaps the most common liquid interface. It covers more than 70 per cent...
The vibrational sum frequency generation (VSFG) spectrum of the water liquid–vapor (LV) interface is...
Our work investigates theoretical approximations to the interface specific sum frequency generation ...
Vibrational sum-frequency generation (SFG) spectroscopy is demonstrated as a fast method to quantify...
We report vibrational lifetime measurements of the OH stretch vibration of interfacial water in cont...
200 pagesAqueous interfaces are ubiquitous across atmospheric, biological, and technological process...
The properties and behavior of water at interfaces is important in many fields. However, it is not c...
200 pagesAqueous interfaces are ubiquitous across atmospheric, biological, and technological process...
The effect of the surface electric field on the ultrafast vibrational dynamics of interfacial water ...
The water bending mode provides a powerful probe of the microscopic structure of bulk aqueous system...
In this issue of Chem, Paesani and co-workers present a computational analysis of sum-frequency gene...
In this issue of Chem, Paesani and co-workers present a computational analysis of sum-frequency gene...
The electric double layer governs the processes of all charged surfaces in aqueous solutions; howeve...
The structure of interfacial water determines atmospheric chemistry, wetting properties of materials...
Knowledge of the interfacial water structure is essential for a basic understanding of the many envi...
The air-water interface is perhaps the most common liquid interface. It covers more than 70 per cent...
The vibrational sum frequency generation (VSFG) spectrum of the water liquid–vapor (LV) interface is...
Our work investigates theoretical approximations to the interface specific sum frequency generation ...
Vibrational sum-frequency generation (SFG) spectroscopy is demonstrated as a fast method to quantify...