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Length Scale of Dynamic Heterogeneities at the Glass Transition Determined by Multidimensional Nuclear Magnetic Resonance
549
Citations
21
References
1998
Year
Relaxation ProcessMagnetismEngineeringPhysicsGlass TransitionOptical PropertiesSpin SystemsEquilibrium Length ScaleApplied PhysicsResonanceCondensed Matter PhysicsMagnetic ResonanceGlass MaterialDynamic Nuclear PolarizationSpin DynamicDynamic HeterogeneitiesLength Scale
We directly measure the equilibrium length scale of dynamic heterogeneities close to the glass transition by means of a new multidimensional NMR experiment. The spatial information is gained from a proton spin diffusion experiment combined with two 2D ${}^{13}\mathrm{C}$ exchange sequences via appropriate back and forth transfer of magnetization between ${}^{13}\mathrm{C}$ and ${}^{1}\mathrm{H}$ spins. For poly(vinyl acetate) at 10 K above the glass transition we detected a length scale of $3\ifmmode\pm\else\textpm\fi{}1\mathrm{nm}$.
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