Chirality detection of gas-phase molecules at low concentrations is challenging as the molecular number density is usually too low to perform conventional circular dichroism absorption experiments. In recent years, new spectroscopic methods have been developed to detect chirality in the gas phase. In particular, the angular distribution of photoelectrons after multiphoton laser ionization of chiral molecules using circularly polarized light is highly sensitive to the enantiomeric form of the ionized molecule [multiphoton photoelectron circular dichroism (MP-PECD)]. In this paper, we employ the MP-PECD as an analytic tool for chirality detection of the bicyclic monoterpene fenchone desorbing from a Ag(111) crystal. We record velocity-resolve...
We present an experimental X-ray photoelectron circular dichroism (PECD) study of liquid fenchone at...
The study of chiral adsorbed molecules is important for an analysis of enantioselectivity in heterog...
Chirality plays a fundamental role in the activity of biological molecules and broad classes of chem...
In this Perspective we discuss photoelectron circular dichroism (PECD), a relatively novel technique...
International audiencePhotoelectron circular dichroism (PECD) manifests itself as an intense forward...
Simultaneous, enantiomer-specific identification of chiral molecules in multi-component mixtures is ...
We report chirality detection of structural isomers in a gas phase mixture using nanosecond photoele...
Since 15 years, a new type of chiroptical effect has been the subject of a large array of both theor...
The photoionization of chiral molecules by elliptically polarized femtosecond laser pulses produces ...
We present an experimental X ray photoelectron circular dichroism PECD study of liquid fenchone at...
We present an experimental X-ray photoelectron circular dichroism (PECD) study of liquid fenchone at...
The study of chiral adsorbed molecules is important for an analysis of enantioselectivity in heterog...
Photoelectron circular dichroism (PECD) is a highly sensitive enantiospecific spectroscopy for study...
We present an experimental X-ray photoelectron circular dichroism (PECD) study of liquid fenchone at...
The study of chiral adsorbed molecules is important for an analysis of enantioselectivity in heterog...
Chirality plays a fundamental role in the activity of biological molecules and broad classes of chem...
In this Perspective we discuss photoelectron circular dichroism (PECD), a relatively novel technique...
International audiencePhotoelectron circular dichroism (PECD) manifests itself as an intense forward...
Simultaneous, enantiomer-specific identification of chiral molecules in multi-component mixtures is ...
We report chirality detection of structural isomers in a gas phase mixture using nanosecond photoele...
Since 15 years, a new type of chiroptical effect has been the subject of a large array of both theor...
The photoionization of chiral molecules by elliptically polarized femtosecond laser pulses produces ...
We present an experimental X ray photoelectron circular dichroism PECD study of liquid fenchone at...
We present an experimental X-ray photoelectron circular dichroism (PECD) study of liquid fenchone at...
The study of chiral adsorbed molecules is important for an analysis of enantioselectivity in heterog...
Photoelectron circular dichroism (PECD) is a highly sensitive enantiospecific spectroscopy for study...
We present an experimental X-ray photoelectron circular dichroism (PECD) study of liquid fenchone at...
The study of chiral adsorbed molecules is important for an analysis of enantioselectivity in heterog...
Chirality plays a fundamental role in the activity of biological molecules and broad classes of chem...