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Featured researches published by Paul Jouanna.


Journal of Chemical Physics | 2004

Phases, periphases, and interphases equilibrium by molecular modeling. I. Mass equilibrium by the semianalytical stochastic perturbations method and application to a solution between (120) gypsum faces

Laurent Pedesseau; Paul Jouanna

The SASP (semianalytical stochastic perturbations) method is an original mixed macro-nano-approach dedicated to the mass equilibrium of multispecies phases, periphases, and interphases. This general method, applied here to the reflexive relation C(k)<=>mu(k) between the concentrations C(k) and the chemical potentials mu(k) of k species within a fluid in equilibrium, leads to the distribution of the particles at the atomic scale. The macroaspects of the method, based on analytical Taylors developments of chemical potentials, are intimately mixed with the nanoaspects of molecular mechanics computations on stochastically perturbed states. This numerical approach, directly linked to definitions, is universal by comparison with current approaches, DLVO Derjaguin-Landau-Verwey-Overbeek, grand canonical Monte Carlo, etc., without any restriction on the number of species, concentrations, or boundary conditions. The determination of the relation C(k)<=>mu(k) implies in fact two problems: a direct problem C(k)=>mu(k) and an inverse problem mu(k)=>C(k). Validation of the method is demonstrated in case studies A and B which treat, respectively, a direct problem and an inverse problem within a free saturated gypsum solution. The flexibility of the method is illustrated in case study C dealing with an inverse problem within a solution interphase, confined between two (120) gypsum faces, remaining in connection with a reference solution. This last inverse problem leads to the mass equilibrium of ions and water molecules within a 3 A thick gypsum interface. The major unexpected observation is the repulsion of SO(4) (2-) ions towards the reference solution and the attraction of Ca(2+) ions from the reference solution, the concentration being 50 times higher within the interphase as compared to the free solution. The SASP method is today the unique approach able to tackle the simulation of the number and distribution of ions plus water molecules in such extreme confined conditions. This result is of prime importance for all coupled chemical-mechanical problems dealing with interfaces, and more generally for a wide variety of applications such as phase changes, osmotic equilibrium, surface energy, etc., in complex chemical-physics situations.


Earth and Planetary Science Letters | 2008

Ab initio elastic properties of talc from 0 to 12 GPa: Interpretation of seismic velocities at mantle pressures and prediction of auxetic behaviour at low pressure

David Mainprice; Yvon Le Page; John R. Rodgers; Paul Jouanna


Earth and Planetary Science Letters | 2007

Predicted elastic properties of the hydrous D phase at mantle pressures: Implications for the anisotropy of subducted slabs near 670-km discontinuity and in the lower mantle

David Mainprice; Yvon Le Page; John R. Rodgers; Paul Jouanna


Archive | 1980

Method and apparatus for exploring earth and rocky formations

Bernard Crosnier; Pierre Duruisseaud; Gilles Fras; Paul Jouanna; Jean-Luc Portales


Journal of Crystal Growth | 2009

Prediction of molecular crystal structures using a genetic algorithm: Validation by GenMol™ on energetic compounds

Gérard Pèpe; R. Perbost; J. Courcambeck; Paul Jouanna


Journal of Physical Chemistry C | 2012

Inner and Subsurface Distribution of Water and Ions in Weakly and Highly Hydrophilic Uncharged Nanoporous Materials: A Molecular Dynamics Study of a Confined NaI Electrolyte Solution

Jalal Dweik; Benoit Coasne; John Palmeri; Paul Jouanna; Philippe Gouze


Cement and Concrete Research | 2008

Mass and momentum interface equilibrium by molecular modeling. Simulating AFM adhesion between (120) gypsum faces in a saturated solution and consequences on gypsum cohesion

Paul Jouanna; Laurent Pedesseau; Gérard Pèpe; David Mainprice


Physics and Chemistry of Minerals | 2011

Calculation of infrared and Raman vibration modes of magnesite at high pressure by density-functional perturbation theory and comparison with experiments

Stewart J. Clark; Paul Jouanna; J. Haines; David Mainprice


Journal of Crystal Growth | 2011

Predicting crystal structure and habit of organic micro-crystals by experimentally assisted molecular modelling (EAMM). The case of n-octylamino-NBD

Gérard Pèpe; Suzanne Fery-Forgues; Paul Jouanna


Journal of Crystal Growth | 2010

Atomic modelling of crystal/complex fluid/crystal contacts—Part II. Simulating AFM tests via the GenMol code for investigating the impact of CO2 storage on kaolinite/brine/kaolinite adhesion

Gérard Pèpe; Jalal Dweik; Paul Jouanna; Philippe Gouze; M. Andreani; Linda Luquot

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Gérard Pèpe

Centre national de la recherche scientifique

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David Mainprice

University of Montpellier

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Jalal Dweik

University of Montpellier

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Philippe Gouze

University of Montpellier

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Andre Montiel

University of Montpellier

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John R. Rodgers

National Research Council

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Yvon Le Page

National Research Council

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