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Inhalt des Dokuments

Inhalt

  • 1995
  • 1994
  • 1993
  • 1992
  • 1991

1995

  • Rheological properties of confined thin films., M. Schoen, S. Hess, D. J. Diestler, Phys. Rev. E 52, 2587 (1995) [1]
  • The microscopic structure os a pure near-critical fluid confined to a mesoscopic slit-pore., M. Schoen, M. Thommes, [2]Phys. Rev. E 52, 6375 (1995) [3]
  • The statistical thermodynamics of thin films., D. J. Diestler, M. Schoen, Acta Chim. Hungar. - Models in Chemistry 132, 45 (1995)
  • Taylor-expansion Monte Carlo calculations of classical fluids in the canonical and grand canonical ensemble., M. Schoen, J. Comput. Phys. 118, 159 (1995) [4].

1994

  • Critical depletion of a pure fluid in controlled-pore glass. Experimental results and grand canonical ensemble Monte Carlo simulations., M. Thommes, G. H. Findenegg, M. Schoen, Langmuir 11, 2137 (1994).
  • Stratification-induced order-disorder phase transition in molecularly thin confined films., M. Schoen, D. J. Diestler, J. H. Cushman, J. Chem. Phys. 101, 6865 (1994) [5]
  • Transient coexisting nanophases in ultrathin films confined between corrugated walls, J. E. Curry, F. Zhang, J. H. Cushman, M. Schoen, D. J. Diestler, J. Chem. Phys. 101, 10824 (1994). [6]
  • A grand isostress ensemble Monte Carlo study of thin films under shear., M. Schoen, D. J. Diestler, J. H. Cushman, Ber. Bunsenges. Phys. Chem. 98, 454 (1994).
  • Fluids in micropore. IV. The behavior of molecularly thin confined films in the grand isostress ensemble., M. Schoen, D. J. Diestler, J. H. Cushman, J. Chem. Phys. 100, 7707 (1994) [7]
  • Thermodynamics of a fluid confined to a slit-pore with structured walls., D. J. Diestler, M. Schoen, J. E. Curry, J. H. Cushman, J. Chem. Phys. 101, 9140 (1994).
  • Interfacial tension in confined molecularly thin films., J. E. Curry, J. H. Cushman, M. Schoen, D. J. Diestler, Mol. Phys. 81, 1059 (1994) [8]
  • Anomalous diffusion in confined monolayer films., M. Schoen, J. H. Cushman, D. J. Diestler, Mol. Phys. 81, 475 (1994) [9]

1993

  • On the thermodynamic stability of confined thin films under shear., D. J. Diestler, M. Schoen, J. H. Cushman, Science 262, 545 (1993) [10]
  • Phase transitions in confined molecularly thin films., J. H. Cushman, D. J. Diestler, M. Schoen, Mat. Res. Soc. Symp. Proc. 290, 81 (1993)
  • Shear melting of confined monolayer films., M. Schoen, D. J. Diestler, J. H. Cushman, Phys. Rev B 47, 5603 (1993) [11].
  • Computer simulation of condensed phases in complex geometries., M. Schoen, (Springer-Verlag, Heidelberg, 1993).

1992

  • Isostress-isostrain ensemble Monte Carlo simulations of second-order phase transitions in a confined monolayer fluid., M. Schoen, D. J. Diestler, J. H. Cushman, Mol. Phys. 78, 1097 (1992) [12]

1991

  • Fluids in micropores.
    III. Self-diffusion in a slit-pore with hard rough walls., D. J. Diestler, M. Schoen, A. W. Hertzner, J. H. Cushman, J. Chem. Phys. 95, 5432 (1991) [13]
  • Nonlocal transport theories in media with microstructure., J. H. Cushman, D. J. Diestler, M. Schoen, J. Am. Soc. Mech. Eng. Div. Appl. Mech. 117, 17 (1991)
  • The influence of long range electrostatic interactions on properties of polar fluids at liquid-gas interfaces., A. W. Hertzner, M. Schoen, H. Morgner, Mol. Phys. 73, 1011 (1991) [14]
  • Comment on ``Adsorption and diffusion at rough surfaces. A comparison of statistical mechanics, molecular dynamics, and kinetic theory''., J. P. Valleau, D. J. Diestler, J. H. Cushman, M. Schoen, A. W. Hertzner, J. Chem. Phys. 95, 6194 (1991 [15])
  • Numerical statistical mechanics studies of the behavior of simple fluids in structured slit micropore., J. H. Cushman, D. J. Diestler, in Mathematical and computational issues in geophysics and solid mechanics. SIAM frontiers in applied mathematics, hrsg. von M. Wheeler, W. Fitzgibbon, (SIAM, New York, 1991)
  • Monte Carlo methods in classical statistical mechanics., M. Schoen, D. J. Diestler, J. H. Cushman, in Scientific computing on supercomputers, Vol. II, hrsg. von J. T. Devreese, P. E. van Camp, (Plenum Press, New York, 1991)

Prof. Dr. Martin Schoen
Fachgebietsleiter
Theoretische Chemie
E-Mail-Anfrage [16]
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