21 research outputs found

    Fluid-crystal coexistence for proteins and inorganic nanocolloids: dependence on ionic strength

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    We investigate theoretically the fluid-crystal coexistence of solutions of globular charged nanoparticles like proteins and inorganic colloids. The thermodynamic properties of the fluid phase are computed via the optimized Baxter model. This is done specifically for lysozyme and silicotungstates for which the bare adhesion parameters are evaluated via the experimental second virial coefficients. The electrostatic free energy of the crystal is approximated by supposing the cavities in the interstitial phase between the particles are spherical in form. In the salt-free case a Poisson-Boltzmann equation is solved to calculate the effective charge on a particle and a Donnan approximation is used to derive the chemical potential and osmotic pressure in the presence of salt. The coexistence data of lysozyme and silicotungstates are analyzed within this scheme, especially with regard to the ionic-strength dependence of the chemical potentials. The latter agree within the two phases provided some upward adjustment of the effective charge is allowed for.Comment: 15 pages, 9 figure

    Sur le pouvoir rotatoire moléculaire

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    Sur un nouveau corps Ă  double pouvoir rotatoire

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    La structure des corps cristallisés doués de pouvoir rotatoire

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    Gitterkonstanten und Raumgruppe von Salol

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    �ber die Analyse der Monazitsande

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    Potentiometric studies on bismuth ferrocyanide and the determination of bismuth

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    �ber die gebr�uchlichen Trennungsmethoden von Beryllium und Aluminium

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