Citation: Kl. Ngai et Cm. Roland, Development of cooperativity in the local segmental dynamics of poly(vinylacetate): synergy of thermodynamics and intermolecular coupling, POLYMER, 43(2), 2002, pp. 567-573
Citation: Kl. Ngai et al., Correlation of positron annihilation and other dynamic properties in smallmolecule glass-forming substances - art. no. 215901, PHYS REV L, 8721(21), 2001, pp. 5901
Authors:
Roland, CM
Ngai, KL
Santangelo, PG
Qiu, XH
Ediger, MD
Plazek, DJ
Citation: Cm. Roland et al., Temperature dependence of segmental and terminal relaxation in atactic polypropylene melts, MACROMOLEC, 34(18), 2001, pp. 6159-6160
Citation: R. Casalini et Kl. Ngai, Structural dependence of fast relaxation in glass-forming substances and correlation with the stretch exponent of the slow structural alpha-relaxation, J NON-CRYST, 293, 2001, pp. 318-326
Authors:
Ngai, KL
Lunkenheimer, P
Leon, C
Schneider, U
Brand, R
Loidl, A
Citation: Kl. Ngai et al., Nature and properties of the Johari-Goldstein beta-relaxation in the equilibrium liquid state of a class of glass-formers, J CHEM PHYS, 115(3), 2001, pp. 1405-1413
Citation: M. Paluch et al., Pressure and temperature dependences of the relaxation dynamics of cresolphthalein-dimethylether: Evidence of contributions from thermodynamics and molecular interactions, J CHEM PHYS, 114(24), 2001, pp. 10872-10883
Authors:
Rizos, AK
Alifragis, J
Ngai, KL
Heitjans, P
Citation: Ak. Rizos et al., Near constant loss in glassy and crystalline LiAlSi2O6 from conductivity relaxation measurements, J CHEM PHYS, 114(2), 2001, pp. 931-934
Citation: Kl. Ngai, Effects of confinement on relaxation in glass-formers: Magnitude, trends and dependence on the Kohlrausch exponent, J PHYS IV, 10(P7), 2000, pp. 21-26
Citation: Kl. Ngai et Rw. Rendell, Interpreting the real part of the dielectric permittivity contributed by mobile ions in ionically conducting materials, PHYS REV B, 61(14), 2000, pp. 9393-9398
Citation: Kl. Ngai, Short-time and long-time relaxation dynamics of glass-forming substances: a coupling model perspective, J PHYS-COND, 12(29), 2000, pp. 6437-6451
Citation: Kl. Ngai, Is the susceptibility minimum of glass-forming liquids due to the beta-relaxation of the mode coupling theory or caused by the ubiquitous constant loss?, J NON-CRYST, 274(1-3), 2000, pp. 155-161
Citation: R. Casalini et al., Analysis of the susceptibility minimum observed in 0.4Ca(NO3)(2)-0.6KNO(3)by dielectric spectroscopy and light scattering, J CHEM PHYS, 112(11), 2000, pp. 5181-5189
Citation: Kl. Ngai, Alternative explanation of the difference between translational diffusion and rotational diffusion in supercooled liquids, J PHYS CH B, 103(48), 1999, pp. 10684-10694
Citation: Kl. Ngai, Modification of the Adam-Gibbs model of glass transition for consistency with experimental data, J PHYS CH B, 103(28), 1999, pp. 5895-5902
Citation: C. Leon et Kl. Ngai, Rapidity of the change of the Kohlrausch exponent of the alpha-relaxation of glass-forming liquids at T-B or T-beta and consequences, J PHYS CH B, 103(20), 1999, pp. 4045-4051
Citation: Kl. Ngai, Breakdown of Debye-Stokes-Einstein and Stokes-Einstein relations in glass-forming liquids: an explanation from the coupling model, PHIL MAG B, 79(11-12), 1999, pp. 1783-1797