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Photosensitive materials for neutron optics
Fally, M., Klepp, J., Pruner, C., Hadden, E., Bianco, A., Kohlbrecher, J., … Tomita, Y. (2024). Photosensitive materials for neutron optics. In R. R. McLeod, I. P. Villalobos, & Y. Tomita (Eds.), Proceedings of SPIE: Vol. 13015. Photosensitive materials and their applications (p. 130150O (12 pp.). https://doi.org/10.1117/12.3022432
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
In situ studies of plant-based meat analog texturization
Guan, T., Sägesser, C., Villiger, R., Zychowski, L., Kohlbrecher, J., Dumpler, J., … Matsarskaia, O. (2024). In situ studies of plant-based meat analog texturization. Food Hydrocolloids, 155, 110215 (11 pp.). https://doi.org/10.1016/j.foodhyd.2024.110215
New insights into protein stabilized emulsions captured via neutron and X-ray scattering: an approach with β-lactoglobulin at triacylglyceride-oil/water interfaces
Heiden-Hecht, T., Wu, B., Schwärzer, K., Förster, S., Kohlbrecher, J., Holderer, O., & Frielinghaus, H. (2024). New insights into protein stabilized emulsions captured via neutron and X-ray scattering: an approach with β-lactoglobulin at triacylglyceride-oil/water interfaces. Journal of Colloid and Interface Science, 655, 319-326. https://doi.org/10.1016/j.jcis.2023.10.155
Antimicrobial peptides increase line tension in raft-forming lipid membranes
Koynarev, V. R., Borgos, K. K. A., Kohlbrecher, J., Porcar, L., Nielsen, J. E., & Lund, R. (2024). Antimicrobial peptides increase line tension in raft-forming lipid membranes. Journal of the American Chemical Society, 146(30), 20891-20903. https://doi.org/10.1021/jacs.4c05377
Iron-carbohydrate complexes treating iron anaemia: understanding the nano-structure and interactions with proteins through orthogonal characterisation
Krupnik, L., Avaro, J., Liebi, M., Anaraki, N. I., Kohlbrecher, J., Sologubenko, A., … Wick, P. (2024). Iron-carbohydrate complexes treating iron anaemia: understanding the nano-structure and interactions with proteins through orthogonal characterisation. Journal of Controlled Release, 368, 566-579. https://doi.org/10.1016/j.jconrel.2024.02.044
Competing effects of temperature and polymer concentration on evolution of re-entrant interactions in the nanoparticle-block copolymer system
Kumar, S., Kohlbrecher, J., & Aswal, V. K. (2024). Competing effects of temperature and polymer concentration on evolution of re-entrant interactions in the nanoparticle-block copolymer system. Langmuir, 40(29), 14888-14899. https://doi.org/10.1021/acs.langmuir.4c00900
Effect of cardiolipin on the lamellarity and elongation of liposomes hydrated in PBS
Piccinini, A., Kohlbrecher, J., Moussaoui, D., Winter, A., & Prévost, S. (2024). Effect of cardiolipin on the lamellarity and elongation of liposomes hydrated in PBS. Journal of Colloid and Interface Science, 669, 844-855. https://doi.org/10.1016/j.jcis.2024.04.211
Thermal density fluctuations and polymorphic phase transitions of Ethane (C<sub>2</sub>D<sub>6</sub>) in the gas/liquid and supercritical states
Pipich, V., Kohlbrecher, J., & Schwahn, D. (2024). Thermal density fluctuations and polymorphic phase transitions of Ethane (C2D6) in the gas/liquid and supercritical states. Journal of Physical Chemistry B, 128(20), 5072-5082. https://doi.org/10.1021/acs.jpcb.4c01422
Magnetic microstructure of nanocrystalline Fe-Nb-B alloys as seen by small-angle neutron and x-ray scattering
Rai, V., Titov, I., Adams, M. P., Suzuki, K., Kohlbrecher, J., & Michels, A. (2024). Magnetic microstructure of nanocrystalline Fe-Nb-B alloys as seen by small-angle neutron and x-ray scattering. Physical Review B, 110(5), 054437 (16 pp.). https://doi.org/10.1103/PhysRevB.110.054437
Effect of annealing on the magnetic microstructure of high-pressure torsion iron: the relevance of higher-order contributions to the magnetic small-angle neutron scattering cross section
Bersweiler, M., Sato, H., Adachi, N., Todaka, Y., Peral, I., Kohlbrecher, J., … Oba, Y. (2023). Effect of annealing on the magnetic microstructure of high-pressure torsion iron: the relevance of higher-order contributions to the magnetic small-angle neutron scattering cross section. IUCrJ, 10, 411-419. https://doi.org/10.1107/S2052252523003937
Integrative solution structure of PTBP1-IRES complex reveals strong compaction and ordering with residual conformational flexibility
Dorn, G., Gmeiner, C., de Vries, T., Dedic, E., Novakovic, M., Damberger, F. F., … Allain, F. H. T. (2023). Integrative solution structure of PTBP1-IRES complex reveals strong compaction and ordering with residual conformational flexibility. Nature Communications, 14(1), 6429 (16 pp.). https://doi.org/10.1038/s41467-023-42012-z
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
Net Dzyaloshinskii-Moriya interaction in defect-enriched ferromagnet
Quan, Y., Steiner, J., Li, B., Song, Y., Kohlbrecher, J., & Hautle, P. (2023). Net Dzyaloshinskii-Moriya interaction in defect-enriched ferromagnet. Journal of Physics: Condensed Matter, 35(38), 385801 (10 pp.). https://doi.org/10.1088/1361-648X/acdb21
Spontaneous chiral symmetry breaking and lane formation in ferromagnetic ferrofluids
Vilfan, M., Lampret, B., Gregorin, Ž., Cmok, L., Vilfan, A., Klepp, J., … Mertelj, A. (2023). Spontaneous chiral symmetry breaking and lane formation in ferromagnetic ferrofluids. Small, 19(52), 2304387 (11 pp.). https://doi.org/10.1002/smll.202304387
Resolving the complex spin structure in Fe-based soft magnetic nanocrystalline material by magnetic small-angle neutron scattering
Bersweiler, M., Adams, M. P., Peral, I., Kohlbrecher, J., Suzuki, K., & Michels, A. (2022). Resolving the complex spin structure in Fe-based soft magnetic nanocrystalline material by magnetic small-angle neutron scattering. Neutron News, 33(2), 15-17. https://doi.org/10.1080/10448632.2022.2050641
Unraveling the magnetic softness in Fe-Ni-B-based nanocrystalline material by magnetic small-angle neutron scattering
Bersweiler, M., Adams, M. P., Peral, I., Kohlbrecher, J., Suzuki, K., & Michels, A. (2022). Unraveling the magnetic softness in Fe-Ni-B-based nanocrystalline material by magnetic small-angle neutron scattering. IUCrJ, 9(1), 65-72. https://doi.org/10.1107/S2052252521010605
Carbide precipitation during processing of two low-alloyed martensitic tool steels with 0.11 and 0.17 V/Mo ratios studied by neutron scattering, electron microscopy and atom probe
Claesson, E., Magnusson, H., Kohlbrecher, J., Thuvander, M., Lindberg, F., Andersson, M., & Hedström, P. (2022). Carbide precipitation during processing of two low-alloyed martensitic tool steels with 0.11 and 0.17 V/Mo ratios studied by neutron scattering, electron microscopy and atom probe. Metals, 12(5), 758 (16 pp.). https://doi.org/10.3390/met12050758
Evolution of iron carbides during tempering of low-alloy tool steel studied with polarized small angle neutron scattering, electron microscopy and atom probe
Claesson, E., Magnusson, H., Kohlbrecher, J., Thuvander, M., & Hedström, P. (2022). Evolution of iron carbides during tempering of low-alloy tool steel studied with polarized small angle neutron scattering, electron microscopy and atom probe. Materials Characterization, 194, 112464 (11 pp.). https://doi.org/10.1016/j.matchar.2022.112464
Rigid-to-flexible transition in a molecular brush in a good solvent at a semidilute concentration
Kang, J. J., Sachse, C., Ko, C. H., Schroer, M. A., Vela, S. D., Molodenskiy, D., … Papadakis, C. M. (2022). Rigid-to-flexible transition in a molecular brush in a good solvent at a semidilute concentration. Langmuir, 38(17), 5226-5236. https://doi.org/10.1021/acs.langmuir.1c02589
 

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