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Structural and therapeutic properties of salicylic acid-solubilized Pluronic solutions and hydrogels
Ganguly, R., Kumar, S., Soumya, M., Khare, A., Bhainsa, K. C., Aswal, V. K., & Kohlbrecher, J. (2024). Structural and therapeutic properties of salicylic acid-solubilized Pluronic solutions and hydrogels. Soft Matter, 20(9), 2075-2087. https://doi.org/10.1039/d4sm00079j
Comparative study of the co-assembly behaviour of 3-chloro-4-hydroxy-phenylazo dyes with DTAB
Müller, W., Schweins, R., Nöcker, B., Kohlbrecher, J., Smales, G. J., & Huber, K. (2023). Comparative study of the co-assembly behaviour of 3-chloro-4-hydroxy-phenylazo dyes with DTAB. Soft Matter, 19(24), 4588-4598. https://doi.org/10.1039/D3SM00501A
Neutron radiography of liquid foam structure near a vertical wall
Skrypnik, A., Knüpfer, L., Trtik, P., Tholan, V., Parkes, S., & Heitkam, S. (2023). Neutron radiography of liquid foam structure near a vertical wall. Soft Matter, 44(19), 8552-8560. https://doi.org/10.1039/d3sm00983a
Experimental determination of the bulk moduli of hollow nanogels
Scotti, A., Gasser, U., Petrunin, A. V., Fruhner, L., Richtering, W., & Houston, J. E. (2022). Experimental determination of the bulk moduli of hollow nanogels. Soft Matter, 18(31), 5750-5758. https://doi.org/10.1039/d2sm00680d
Globular protein assembly and network formation at fluid interfaces: effect of oil
Bergfreund, J., Diener, M., Geue, T., Nussbaum, N., Kummer, N., Bertsch, P., … Fischer, P. (2021). Globular protein assembly and network formation at fluid interfaces: effect of oil. Soft Matter, 17(6), 1692-1700. https://doi.org/10.1039/D0SM01870H
Surface tensiometry of phase separated protein and polymer droplets by the sessile drop method
Ijavi, M., Style, R. W., Emmanouilidis, L., Kumar, A., Meier, S. M., Torzynski, A. L., … Dufresne, E. R. (2021). Surface tensiometry of phase separated protein and polymer droplets by the sessile drop method. Soft Matter, 17(6), 1655-1662. https://doi.org/10.1039/d0sm01319f
Interaction of a bovine serum albumin (BSA) protein with mixed anionic-cationic surfactants and the resultant structure
Saha, D., Ray, D., Kumar, S., Kohlbrecher, J., & Aswal, V. K. (2021). Interaction of a bovine serum albumin (BSA) protein with mixed anionic-cationic surfactants and the resultant structure. Soft Matter, 17(29), 6972-6984. https://doi.org/10.1039/d1sm00264c
Structural color from solid-state polymerization-induced phase separation
Sicher, A., Ganz, R., Menzel, A., Messmer, D., Panzarasa, G., Feofilova, M., … Dufresne, E. R. (2021). Structural color from solid-state polymerization-induced phase separation. Soft Matter, 17(23), 5772-5779. https://doi.org/10.1039/d1sm00210d
Switchable adhesion of soft composites induced by a magnetic field
Testa, P., Chappuis, B., Kistler, S., Style, R. W., Heyderman, L. J., & Dufresne, E. R. (2020). Switchable adhesion of soft composites induced by a magnetic field. Soft Matter, 16(25), 5806-5811. https://doi.org/10.1039/D0SM00626B
Transient measurement and structure analysis of protein-polysaccharide multilayers at fluid interfaces
Bertsch, P., Thoma, A., Bergfreund, J., Geue, T., & Fischer, P. (2019). Transient measurement and structure analysis of protein-polysaccharide multilayers at fluid interfaces. Soft Matter, 15(31), 6362-6368. https://doi.org/10.1039/C9SM01112A
Evolution of nematic and ferromagnetic ordering in suspensions of magnetic nanoplatelets
Mertelj, A., Lampret, B., Lisjak, D., Klepp, J., Kohlbrecher, J., & Čopič, M. (2019). Evolution of nematic and ferromagnetic ordering in suspensions of magnetic nanoplatelets. Soft Matter, 15(27), 5412-5420. https://doi.org/10.1039/C9SM00949C
Nano-confinement of block copolymers in high accuracy topographical guiding patterns: modelling the emergence of defectivity due to incommensurability
Gottlieb, S., Kazazis, D., Mochi, I., Evangelio, L., Fernández-Regúlez, M., Ekinci, Y., & Perez-Murano, F. (2018). Nano-confinement of block copolymers in high accuracy topographical guiding patterns: modelling the emergence of defectivity due to incommensurability. Soft Matter, 14(33), 6799-6808. https://doi.org/10.1039/c8sm01045e
Mixing ratio dependent complex coacervation <i>versus</i> bicontinuous gelation of pectin with <i>in situ</i> formed zein nanoparticles
Kaushik, P., Rawat, K., Aswal, V. K., Kohlbrecher, J., & Bohidar, H. B. (2018). Mixing ratio dependent complex coacervation versus bicontinuous gelation of pectin with in situ formed zein nanoparticles. Soft Matter, 14(31), 6463-6475. https://doi.org/10.1039/c8sm00809d
Against the rules: pressure induced transition from high to reduced order
Neuhaus, F., Mueller, D., Tanasescu, R., Stefaniu, C., Zaffalon, P. L., Balog, S., … Zumbuehl, A. (2018). Against the rules: pressure induced transition from high to reduced order. Soft Matter, 14(19), 3978-3986. https://doi.org/10.1039/c8sm00212f
The effect of temperature, composition and alcohols on the microstructures of catanionic mixtures of sodium dodecylsulfate and cetyltrimethylammonium bromide in water
Rajkhowa, S., Mahiuddin, S., Dey, J., Kumar, S., Aswal, V. K., Biswas, R., … Ismail, K. (2017). The effect of temperature, composition and alcohols on the microstructures of catanionic mixtures of sodium dodecylsulfate and cetyltrimethylammonium bromide in water. Soft Matter, 13(19), 3556-3567. https://doi.org/10.1039/c7sm00342k
Anisotropic magnetic particles in a magnetic field
Martchenko, I., Crassous, J. J., Mihut, A. M., Bialik, E., Hirt, A. M., Rufier, C., … Schurtenberger, P. (2016). Anisotropic magnetic particles in a magnetic field. Soft Matter, 12(42), 8755-8767. https://doi.org/10.1039/c6sm01411a
Probing the mystery of Liesegang band formation: Revealing the origin of self-organized dual-frequency micro and nanoparticle arrays
Tóth, R., Walliser, R. M., Lagzi, I., Boudoire, F., Düggelin, M., Braun, A., … Constable, E. C. (2016). Probing the mystery of Liesegang band formation: Revealing the origin of self-organized dual-frequency micro and nanoparticle arrays. Soft Matter, 12(40), 8367-8374. https://doi.org/10.1039/c6sm01564f
Rheochaos and flow instability phenomena in a nonionic lamellar phase
Gentile, L., Silva, B. F. B., Lages, S., Mortensen, K., Kohlbrecher, J., & Olsson, U. (2013). Rheochaos and flow instability phenomena in a nonionic lamellar phase. Soft Matter, 9(4), 1133-1140. https://doi.org/10.1039/c2sm27101j
Phase behaviour of colloids with short-range repulsions plus nonadsorbing polymer chains
Van Gruijthuijsen, K., Tuinier, R., Brader, J. M., & Stradner, A. (2013). Phase behaviour of colloids with short-range repulsions plus nonadsorbing polymer chains. Soft Matter, 9(42), 9977-9982. https://doi.org/10.1039/c3sm51432c
Dehydration and vitrification of corneal gel
Annaka, M., Matsuura, T., Maruoka, S., & Ogata, N. (2012). Dehydration and vitrification of corneal gel. Soft Matter, 8(31), 8157-8163. https://doi.org/10.1039/c2sm25370d