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Single molecule force spectroscopy by AFM indicates helical structure of poly(ethylene-glycol) in water

New Journal of Physics · 1999 · Vol. 1 · pp. 6–6
Filipp OesterheltMatthias RiefHermann E. Gaub

Abstract

We elongated individual poly(ethylene-glycol) (PEG) molecules tethered at one end to an AFM cantilever. We observed the resistive force as a function of elongation in different solvents. In all cases the molecular response was found to be fully reversible and thus in thermodynamic equilibrium. In hexadecane the stretched PEG acts like an ideal entropy spring and can be well described as a freely jointed chain. In water we observed marked deviations in the transition region from entropic to enthalpic elasticity, indicating the deformation of a supra-structure within the polymer. An analysis based on elastically coupled Markovian two-level systems agrees well with recent ab initio calculations predicting that PEG in water forms a non-planar supra-structure which is stabilized by water bridges. We obtained a binding free energy of 3.0±0.3 kT.

Force Microscopy Techniques and ApplicationsMechanical and Optical ResonatorsMolecular Junctions and NanostructuresEthylene glycolForce spectroscopyMoleculePEG ratioPhysicsPolymerElasticity (physics)Entropic forceAb initioChemical physics
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References
Sensing specific molecular interactions with the atomic force microscope
Biosensors and Bioelectronics · 1995 · 458 citations
Calculation of thermal noise in atomic force microscopy
Nanotechnology · 1995 · 1,571 citations
Atomic Force Microscope
Physical Review Letters · 1986 · 14,361 citations
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Single molecule force spectroscopy by AFM indicates helical structure of poly(ethylene-glycol) in water · Scinovex