A combined and sequential Monte Carlo-quantum mechanics methodology is used to describe the electronic absorption spectrum of the fluorescein dianion in water. Different sets of 100 statistically relevant configurations composed of the solute and several solvent molecules are sampled from the Monte Carlo simulation for a posteriori quantum mechanical calculations of the spectra. In the largest case the configurations are composed of fluorescein and 90 explicit water molecules embedded in the electrostatic field of all remaining water molecules within a distance of 11.3 angstrom. These configurations include 305 atoms and 842 valence electrons, justifying the use of a semi-empirical approach. The electronic spectrum is then calculated using ...
The n→π* absorption transition of formaldehyde in water is analyzed using combined and sequential cl...
The redox potential of molecular species is largely modulated by its molecular environment so that a...
The absorption spectrum of the acid form of pterin in water was investigated theoretically. Differen...
A combined and sequential Monte Carlo-quantum mechanics methodology is used to describe the electron...
The absorption spectra of aminocoumarin C151 in water and n-hexane solution are investigated by an e...
The absorption spectra of aminocoumarin C151 in water and n-hexane solution are investigated by an e...
We present here the calculation of the absorption spectrum of riboflavin in acetonitrile and dimethy...
In this study we report the modeling of the absorption spectrum of riboflavin in water using a hybri...
Optical properties of aromatic chromophores are used to probe complex biological processes, yet how ...
Ministry of Science and Technology [2011CB808504, 2012CB214900]; National Science Foundation of Chin...
The n→π* absorption transition of formaldehyde in water is analyzed using combined and sequential cl...
: Predicting the electronic properties of aqueous liquids has been a long-standing challenge for qua...
The n→π* absorption transition of formaldehyde in water is analyzed using combined and sequential cl...
The redox potential of molecular species is largely modulated by its molecular environment so that a...
The absorption spectrum of the acid form of pterin in water was investigated theoretically. Differen...
A combined and sequential Monte Carlo-quantum mechanics methodology is used to describe the electron...
The absorption spectra of aminocoumarin C151 in water and n-hexane solution are investigated by an e...
The absorption spectra of aminocoumarin C151 in water and n-hexane solution are investigated by an e...
We present here the calculation of the absorption spectrum of riboflavin in acetonitrile and dimethy...
In this study we report the modeling of the absorption spectrum of riboflavin in water using a hybri...
Optical properties of aromatic chromophores are used to probe complex biological processes, yet how ...
Ministry of Science and Technology [2011CB808504, 2012CB214900]; National Science Foundation of Chin...
The n→π* absorption transition of formaldehyde in water is analyzed using combined and sequential cl...
: Predicting the electronic properties of aqueous liquids has been a long-standing challenge for qua...
The n→π* absorption transition of formaldehyde in water is analyzed using combined and sequential cl...
The redox potential of molecular species is largely modulated by its molecular environment so that a...
The absorption spectrum of the acid form of pterin in water was investigated theoretically. Differen...