The structure of interfacial water determines atmospheric chemistry, wetting properties of materials, and protein folding. The challenge of investigating the properties of specific interfacial water molecules has frequently been confronted using surface-specific sum-frequency generation (SFG) vibrational spectroscopy using the O-H stretch mode. While perfectly suited for the water-air interface, for complex interfaces, a potential complication arises from the contribution of hydroxyl or amine groups of non-water species present at the surface, such as surface hydroxyls on minerals, or O-H and N-H groups contained in proteins. Here, we present a protocol to extract the hydrogen bond strength selectively of interfacial water, through the wate...
Interfacial water structures of aqueous dimethyl sulfoxide (DMSO) and methanesulfonic acid (MSA) wer...
We present the spectrum of the water bend vibrational mode (ν<sub>2</sub>) at the air/water interfac...
Water is ubiquitous in nature and ordinary to us. However, no matter how common it is, water is uniq...
The water bending mode provides a powerful probe of the microscopic structure of bulk aqueous system...
We demonstrate that marked variations exist in hydrogen bonding interactions of interfacial water at...
The air-water interface is perhaps the most common liquid interface. It covers more than 70 per cent...
Vibrational sum frequency spectroscopy is used to measure the vibrational spectroscopy of water mole...
Using the surface-specific vibrational technique of vibrational sum-frequency generation, we reveal ...
200 pagesAqueous interfaces are ubiquitous across atmospheric, biological, and technological process...
200 pagesAqueous interfaces are ubiquitous across atmospheric, biological, and technological process...
Vibrational sum frequency generation (SFG) spectroscopy is employed to investigate the water structu...
The air-water interface is perhaps the most common liquid interface. It covers more than 70 per cent...
2018-11-10The unique ability of water to form extended hydrogen bond network in the bulk environment...
Understanding the structural and dynamical features of interfacial water is of greatest interest in ...
In this thesis we employ highly surface specific vibrational sum-frequency generation (VSFG) spectro...
Interfacial water structures of aqueous dimethyl sulfoxide (DMSO) and methanesulfonic acid (MSA) wer...
We present the spectrum of the water bend vibrational mode (ν<sub>2</sub>) at the air/water interfac...
Water is ubiquitous in nature and ordinary to us. However, no matter how common it is, water is uniq...
The water bending mode provides a powerful probe of the microscopic structure of bulk aqueous system...
We demonstrate that marked variations exist in hydrogen bonding interactions of interfacial water at...
The air-water interface is perhaps the most common liquid interface. It covers more than 70 per cent...
Vibrational sum frequency spectroscopy is used to measure the vibrational spectroscopy of water mole...
Using the surface-specific vibrational technique of vibrational sum-frequency generation, we reveal ...
200 pagesAqueous interfaces are ubiquitous across atmospheric, biological, and technological process...
200 pagesAqueous interfaces are ubiquitous across atmospheric, biological, and technological process...
Vibrational sum frequency generation (SFG) spectroscopy is employed to investigate the water structu...
The air-water interface is perhaps the most common liquid interface. It covers more than 70 per cent...
2018-11-10The unique ability of water to form extended hydrogen bond network in the bulk environment...
Understanding the structural and dynamical features of interfacial water is of greatest interest in ...
In this thesis we employ highly surface specific vibrational sum-frequency generation (VSFG) spectro...
Interfacial water structures of aqueous dimethyl sulfoxide (DMSO) and methanesulfonic acid (MSA) wer...
We present the spectrum of the water bend vibrational mode (ν<sub>2</sub>) at the air/water interfac...
Water is ubiquitous in nature and ordinary to us. However, no matter how common it is, water is uniq...