Hh. Strey et al., EQUATION OF STATE FOR DNA LIQUID-CRYSTALS - FLUCTUATION ENHANCED ELECTROSTATIC DOUBLE-LAYER REPULSION, Physical review letters, 78(5), 1997, pp. 895-898
We have measured the equation of state for DNA solutions at different
ionic strengths covering 5 orders of magnitude in DNA osmotic pressure
. At high osmotic pressures the equation of state is independent of th
e ionic strength and is dominated by exponentially decaying hydration
repulsion. At lower pressures the equation of state is dominated by sc
reened electrostatics. We also found a fluctuation-enhanced repulsion
with a decay length of 4 times the. Debye screening length. We present
arguments that the form of the fluctuation part of the osmotic pressu
re is due to the coupling between bending fluctuations and the compres
sibility of the nematic array normal to the average director.