Colloidal suspensions of anisotropic nanoparticles can spontaneously self-organize in liquid-crystalline phases beyond some concentration threshold. These phases often respond to electric and magnetic fields. At lower concentrations, usual isotropic liquids are observed but they can display very strong Kerr and Cotton-Mouton effects (i.e., field-induced particle orientation). For many examples of these colloidal suspensions, the solvent is water, which hinders most electro-optic applications. Here, for goethite (α-FeOOH) nanorod dispersions, we show that water can be replaced by polar aprotic solvents, such as N-methyl-2-pyrrolidone (NMP) and dimethylsulfoxide (DMSO), without loss of colloidal stability. By polarized-light microscopy, small...
International audienceLanthanum phosphate (LaPO4) nanorods dispersed in the non-aqueous solvent of e...
International audienceLanthanum phosphate (LaPO4) nanorods dispersed in the non-aqueous solvent of e...
International audienceLanthanum phosphate (LaPO4) nanorods dispersed in the non-aqueous solvent of e...
Depending on volume fraction, aqueous suspensions of goethite ($\alpha$-FeOOH) nanorods form a liqui...
Depending on volume fraction, aqueous suspensions of goethite ($\alpha$-FeOOH) nanorods form a liqui...
Depending on volume fraction, aqueous suspensions of goethite ($\alpha$-FeOOH) nanorods form a liqui...
International audienceClay minerals, like beidellite or nontronite, spontaneously exfoliate in water...
International audienceClay minerals, like beidellite or nontronite, spontaneously exfoliate in water...
International audienceClay minerals, like beidellite or nontronite, spontaneously exfoliate in water...
International audienceClay minerals, like beidellite or nontronite, spontaneously exfoliate in water...
International audienceClay minerals, like beidellite or nontronite, spontaneously exfoliate in water...
At volume fractions larger than 8.5%, aqueous suspensions of lath-like goethite ($\alpha$-FeOOH) nan...
At volume fractions larger than 8.5%, aqueous suspensions of lath-like goethite ($\alpha$-FeOOH) nan...
In this thesis the liquid crystal phase behavior of colloidal, boardlike, goethite (alpha-FeOOH) par...
International audienceLanthanum phosphate (LaPO4) nanorods dispersed in the non-aqueous solvent of e...
International audienceLanthanum phosphate (LaPO4) nanorods dispersed in the non-aqueous solvent of e...
International audienceLanthanum phosphate (LaPO4) nanorods dispersed in the non-aqueous solvent of e...
International audienceLanthanum phosphate (LaPO4) nanorods dispersed in the non-aqueous solvent of e...
Depending on volume fraction, aqueous suspensions of goethite ($\alpha$-FeOOH) nanorods form a liqui...
Depending on volume fraction, aqueous suspensions of goethite ($\alpha$-FeOOH) nanorods form a liqui...
Depending on volume fraction, aqueous suspensions of goethite ($\alpha$-FeOOH) nanorods form a liqui...
International audienceClay minerals, like beidellite or nontronite, spontaneously exfoliate in water...
International audienceClay minerals, like beidellite or nontronite, spontaneously exfoliate in water...
International audienceClay minerals, like beidellite or nontronite, spontaneously exfoliate in water...
International audienceClay minerals, like beidellite or nontronite, spontaneously exfoliate in water...
International audienceClay minerals, like beidellite or nontronite, spontaneously exfoliate in water...
At volume fractions larger than 8.5%, aqueous suspensions of lath-like goethite ($\alpha$-FeOOH) nan...
At volume fractions larger than 8.5%, aqueous suspensions of lath-like goethite ($\alpha$-FeOOH) nan...
In this thesis the liquid crystal phase behavior of colloidal, boardlike, goethite (alpha-FeOOH) par...
International audienceLanthanum phosphate (LaPO4) nanorods dispersed in the non-aqueous solvent of e...
International audienceLanthanum phosphate (LaPO4) nanorods dispersed in the non-aqueous solvent of e...
International audienceLanthanum phosphate (LaPO4) nanorods dispersed in the non-aqueous solvent of e...
International audienceLanthanum phosphate (LaPO4) nanorods dispersed in the non-aqueous solvent of e...