1 |
A molecular dynamics study of the dielectric properties of aqueous solutions of alanine and alanine dipeptide Boresch S, Willensdorfer M, Steinhauser O Journal of Chemical Physics, 120(7), 3333, 2004 |
2 |
Dielectric spectroscopy in aqueous solutions of oligosaccharides: Experiment meets simulation Weingartner H, Knocks A, Boresch S, Hochtl P, Steinhauser O Journal of Chemical Physics, 115(3), 1463, 2001 |
3 |
Making use of Connolly's molecular surface program in the isodensity adapted polarizable continuum model Hofinger S, Steinhauser O Journal of Chemical Physics, 115(23), 10636, 2001 |
4 |
The dielectric self-consistent field method. I. Highways, byways, and illustrative results Boresch S, Steinhauser O Journal of Chemical Physics, 115(23), 10780, 2001 |
5 |
The dielectric self-consistent field method. II. Application to the study of finite range effects Boresch S, Steinhauser O Journal of Chemical Physics, 115(23), 10793, 2001 |
6 |
Comments on "Anomalous dielectric relaxation of aqueous protein solutions" by Nilashis Nandi and Biman Bagchi (J-Phys. Chem. A 1998, 102, 8217) Boresch S, Steinhauser O Journal of Physical Chemistry A, 105(22), 5507, 2001 |
7 |
Dielectric properties of glucose and maltose solutions Hochtl P, Boresch S, Steinhauser O Journal of Chemical Physics, 112(22), 9810, 2000 |
8 |
Studying the dielectric properties of a protein solution by computer simulation Boresch S, Hochtl P, Steinhauser O Journal of Physical Chemistry B, 104(36), 8743, 2000 |
9 |
Rationalizing the effects of modified electrostatic interactions in computer simulations: The dielectric self-consistent field method Boresch S, Steinhauser O Journal of Chemical Physics, 111(18), 8271, 1999 |
10 |
Rationalization of the dielectric properties of common three-site water models in terms of their force field parameters Hochtl P, Boresch S, Bitomsky W, Steinhauser O Journal of Chemical Physics, 109(12), 4927, 1998 |