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The Journal of Physical Chemistry. B|July 21, 2006
Do theories of the glass transition, in which the structural relaxation time does not define the dispersion of the structural relaxation, need revision?K L Ngai, R Casalini, S Capaccioli, et al.Physical Review. E, Statistical, Nonlinear, and Soft Matter Physics|November 3, 2001
Effect of pressure on the dynamics of glass formersR Casalini, S Capaccioli, M Lucchesi, et al.Nanotechnology|July 7, 2011
Dynamics of probes attached to quartz tuning forks for the detection of surface forcesM LabardiNanotechnology|February 29, 2020
Model of frequency-modulated atomic force microscopy for interpretation of noncontact piezoresponse measurementsM LabardiThe Journal of Physical Chemistry. B|April 7, 2025
Thermal Stability of Organic Semiconductor Thin Film Glasses by Local Changes in Spontaneous Orientation PolarizationM Ruiz-Ruiz, A Villalobos-Martin, T Bar, et al.The Journal of Chemical Physics|February 12, 2026
Onset of near constant loss under high AC voltageR CasaliniThe Journal of Chemical Physics|December 5, 2012
The fragility of liquids and colloids and its relation to the softness of the potentialR CasaliniPhysical Review. E, Statistical, Nonlinear, and Soft Matter Physics|April 20, 2004
Relation between the activation energy of the Johari-Goldstein beta relaxation and T(g) of glass formersK L Ngai, S CapaccioliThe Journal of Chemical Physics|May 24, 2013
Response to "Comment on 'Unified explanation of the anomalous dynamic properties of highly asymmetric polymer blends' " [J. Chem. Phys. 138, 197101 (2013)]K L Ngai, S CapaccioliThe Journal of Chemical Physics|February 15, 2013
Unified explanation of the anomalous dynamic properties of highly asymmetric polymer blendsK L Ngai, S CapaccioliPageof 48