We investigate the source of Raman background signal commonly misidentified as fluorescence in nonaqueous electrolytes via a variety of spectroscopies (Raman, fluorescence, NMR) and find evidence of hydrogen-bonding interactions. This hydrogen bonding gives rise to broadband anharmonic vibrational modes and suggests that anions play an important and underappreciated role in the structure of nonaqueous electrolytes. Controlling electrolyte structure has important applications in advancing in operando spectroscopy measurements as well as understanding the stability of high concentration electrolytes for next-generation electrochemical energy storage devices
Studies of the model-salt solutions were considerably aided by the formation of crystalline compound...
Electrolytes interact with water in many ways: changing dipole orientation, inducing charge transfer...
none4Raman spectroscopy represents an invaluable tool to shed light into the nature of solvation pro...
In order to explore the relationship between local structures and Raman signals of interfacial water...
The intermolecular hydrogen-bond stretching and librational motions of pure water give rise to broad...
In this work, the Raman spectra of aqueous C12E5 solutions are recorded and utilized to demonstrate ...
Vibrational relaxation and rotational reorientation times for the nitrate ion in aqueous solutions o...
The structural organization of organic electrolytic solutions probed by the Raman noncoincidence eff...
Electrolyte solutions of halide and perchlorate salts, mainly lithium, in non-aqueous solvent have a...
Sum frequency generation vibrational spectra of the water molecules at the NaF and KF aqueous soluti...
The structural and dynamical properties of water are known to be affected by ion solvation. However,...
The concentration dependence of the infrared libration band of water has been studied for forty-six ...
A combined experimental/theoretical approach has been used to investigate the role of water in modif...
A detailed picture of aqueous solvation of ions is central to the understanding of diverse phenomena...
Raman spectroscopy was utilized to investigate the effects of dissolved NaCl on water structure. For...
Studies of the model-salt solutions were considerably aided by the formation of crystalline compound...
Electrolytes interact with water in many ways: changing dipole orientation, inducing charge transfer...
none4Raman spectroscopy represents an invaluable tool to shed light into the nature of solvation pro...
In order to explore the relationship between local structures and Raman signals of interfacial water...
The intermolecular hydrogen-bond stretching and librational motions of pure water give rise to broad...
In this work, the Raman spectra of aqueous C12E5 solutions are recorded and utilized to demonstrate ...
Vibrational relaxation and rotational reorientation times for the nitrate ion in aqueous solutions o...
The structural organization of organic electrolytic solutions probed by the Raman noncoincidence eff...
Electrolyte solutions of halide and perchlorate salts, mainly lithium, in non-aqueous solvent have a...
Sum frequency generation vibrational spectra of the water molecules at the NaF and KF aqueous soluti...
The structural and dynamical properties of water are known to be affected by ion solvation. However,...
The concentration dependence of the infrared libration band of water has been studied for forty-six ...
A combined experimental/theoretical approach has been used to investigate the role of water in modif...
A detailed picture of aqueous solvation of ions is central to the understanding of diverse phenomena...
Raman spectroscopy was utilized to investigate the effects of dissolved NaCl on water structure. For...
Studies of the model-salt solutions were considerably aided by the formation of crystalline compound...
Electrolytes interact with water in many ways: changing dipole orientation, inducing charge transfer...
none4Raman spectroscopy represents an invaluable tool to shed light into the nature of solvation pro...