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An overview of neutron scattering and molecular dynamics simulation studies of phospholipid bilayers in room-temperature ionic liquid/water solutions
Benedetto, A., & Ballone, P. (2018). An overview of neutron scattering and molecular dynamics simulation studies of phospholipid bilayers in room-temperature ionic liquid/water solutions. Physica B: Condensed Matter, 551, 227-231. https://doi.org/10.1016/j.physb.2018.02.043
Editorial of the "ionic liquids and biomolecules" special issue
Benedetto, A., & Galla, H. J. (2018). Editorial of the "ionic liquids and biomolecules" special issue. Biophysical Reviews, 10(3), 687-690. https://doi.org/10.1007/s12551-018-0426-3
Room-temperature ionic liquids and biomembranes: setting the stage for applications in pharmacology, biomedicine, and bionanotechnology
Benedetto, A., & Ballone, P. (2018). Room-temperature ionic liquids and biomembranes: setting the stage for applications in pharmacology, biomedicine, and bionanotechnology. Langmuir, 34(33), 9579-9597. https://doi.org/10.1021/acs.langmuir.7b04361
Singlet state formation and its impact on the magnetic structure in the tetramer system SeCuO<sub>3</sub>
Cvitanić, T., Šurija, V., Prša, K., Zaharko, O., Kupčić, I., Babkevich, P., Frontzek, M., Požek, M., Berger, H., Magrez, A., Rønnow, H. M., Grbić, M. S., & Živković, I. (2018). Singlet state formation and its impact on the magnetic structure in the tetramer system SeCuO3. Physical Review B, 98(5), 054409 (8 pp.). https://doi.org/10.1103/PhysRevB.98.054409
24-spin clusters in the mineral boleite KPb<sub>26</sub>Ag<sub>9</sub>Cu<sub>24</sub>Cl<sub>62</sub>(OH)<sub>48</sub>
Dreier, E. S., Holm, S. L., Lønbæk, K., Hansen, U. B., Medarde, M., Živković, I., Babkevich, P., Ruminy, M., Casati, N., Piovano, A., Rols, S., Nilsen, G. J., Boehm, M., Skoulatos, M., Schefer, J., Rønnow, H. M., Fennell, T., & Lefmann, K. (2018). 24-spin clusters in the mineral boleite KPb26Ag9Cu24Cl62(OH)48. Physical Review B, 97(1), 014416 (12 pp.). https://doi.org/10.1103/PhysRevB.97.014416
Manifolds of magnetic ordered states and excitations in the almost Heisenberg pyrochlore antiferromagnet MgCr<sub>2</sub>O<sub>4</sub>
Gao, S., Guratinder, K., Stuhr, U., White, J. S., Mansson, M., Roessli, B., Fennell, T., Tsurkan, V., Loidl, A., Ciomaga Hatnean, M., Balakrishnan, G., Raymond, S., Chapon, L., Garlea, V. O., Savici, A. T., Cervellino, A., Bombardi, A., Chernyshov, D., Rüegg, C., … Zaharko, O. (2018). Manifolds of magnetic ordered states and excitations in the almost Heisenberg pyrochlore antiferromagnet MgCr2O4. Physical Review B, 97(13), 134430 (12 pp.). https://doi.org/10.1103/PhysRevB.97.134430
Neutron radiography and tomography: a new approach to visualize the internal structures of pearls
Hanser, C. S., Krzemnicki, M. S., Grünzweig, C., Harti, R. P., Betz, B., & Mannes, D. (2018). Neutron radiography and tomography: a new approach to visualize the internal structures of pearls. Journal of Gemmology, 36(1), 54-63. https://doi.org/10.15506/JoG.2018.36.1.54
Magnetic ground state and magnon-phonon interaction in multiferroic <em>h</em>-YMnO<sub>3</sub>
Holm, S. L., Kreisel, A., Schäffer, T. K., Bakke, A., Bertelsen, M., Hansen, U. B., Retuerto, M., Larsen, J., Prabhakaran, D., Deen, P. P., Yamani, Z., Birk, J. O., Stuhr, U., Niedermayer, C., Fennell, A. L., Andersen, B. M., & Lefmann, K. (2018). Magnetic ground state and magnon-phonon interaction in multiferroic h-YMnO3. Physical Review B, 97(13), 134304 (11 pp.). https://doi.org/10.1103/PhysRevB.97.134304
Multi-<em>q</em> mesoscale magnetism in CeAuSb<sub>2</sub>
Marcus, G. G., Kim, D. J., Tutmaher, J. A., Rodriguez-Rivera, J. A., Birk, J. O., Niedermeyer, C., Lee, H., Fisk, Z., & Broholm, C. L. (2018). Multi-q mesoscale magnetism in CeAuSb2. Physical Review Letters, 120(9), 097201 (5 pp.). https://doi.org/10.1103/PhysRevLett.120.097201
Scaling the graft length and graft density of irradiation-grafted copolymers
Nagy, G., Sproll, V., Gasser, U., Schmidt, T. J., Gubler, L., & Balog, S. (2018). Scaling the graft length and graft density of irradiation-grafted copolymers. Macromolecular Chemistry and Physics, 219(21), 1800311. https://doi.org/10.1002/macp.201800311
Controlling the mechanoelasticity of model biomembranes with room-temperature ionic liquids
Rotella, C., Kumari, P., Rodriguez, B. J., Jarvis, S. P., & Benedetto, A. (2018). Controlling the mechanoelasticity of model biomembranes with room-temperature ionic liquids. Biophysical Reviews, 10(3), 751-756. https://doi.org/10.1007/s12551-018-0424-5
Chemically-controlled stacking of inorganic subnets in coordination networks: metal-organic magnetic multilayers
Sibille, R., Mazzone, D. G., Ban, V., Mazet, T., & François, M. (2018). Chemically-controlled stacking of inorganic subnets in coordination networks: metal-organic magnetic multilayers. Inorganic Chemistry, 57(14), 8236-8240. https://doi.org/10.1021/acs.inorgchem.8b00748
Calibration of the Suanni small-angle neutron scattering instrument at the China Mianyang research reactor
Tian, Q., Yan, G., Bai, L., Chen, J., Liu, D., Chen, L., Sun, L., Huang, C., Chen, B., Nagy, G., Wacha, A., & Almásy, L. (2018). Calibration of the Suanni small-angle neutron scattering instrument at the China Mianyang research reactor. Journal of Applied Crystallography, 51(6), 1662-1670. https://doi.org/10.1107/S1600576718015285
Giant spontaneous exchange bias obtained by tuning magnetic compensation in samarium ferrite single crystals
Wang, Xxiong, Gao, S., Yan, X., Li, Q., Zhang, Jcheng, Long, Yze, Ruan, Kqing, & Li, Xguang. (2018). Giant spontaneous exchange bias obtained by tuning magnetic compensation in samarium ferrite single crystals. Physical Chemistry Chemical Physics, 20(5), 3687-3693. https://doi.org/10.1039/c7cp07030f
Giant pressure dependence and dimensionality switching in a metal-organic quantum antiferromagnet
Wehinger, B., Fiolka, C., Lanza, A., Scatena, R., Kubus, M., Grockowiak, A., Coniglio, W. A., Graf, D., Skoulatos, M., Chen, J. H., Gukelberger, J., Casati, N., Zaharko, O., Macchi, P., Krämer, K. W., Tozer, S., Mudry, C., Normand, B., & Rüegg, C. (2018). Giant pressure dependence and dimensionality switching in a metal-organic quantum antiferromagnet. Physical Review Letters, 121(11), 117201 (7 pp.). https://doi.org/10.1103/PhysRevLett.121.117201
Kinetics of aggregation in charged nanoparticle solutions driven by different mechanisms
Abbas, S., Yadav, I., Kumar, S., Aswal, V. K., & Kohlbrecher, J. (2017). Kinetics of aggregation in charged nanoparticle solutions driven by different mechanisms. In S. Bhattacharya, S. Singh, A. Das, & S. Basu (Eds.), AIP conference proceedings: Vol. 1832. DAE solid state physics symposium 2016 (p. 040007 (3 pp.). https://doi.org/10.1063/1.4980209
Neutron investigations of the magnetic properties of Fe<em><sub>x</sub></em>Mn<sub>1-<em>x</em></sub>S under pressure up to 4.2 GPa
Abramova, G., Boehm, M., Schefer, J., Piovano, A., Zeer, G., Zharkov, S., Mita, Y., & Sokolov, V. (2017). Neutron investigations of the magnetic properties of FexMn1-xS under pressure up to 4.2 GPa. JETP Letters, 106(8), 498-502. https://doi.org/10.1134/S0021364017200012
Electronic and magnetic excitations in the half-stuffed Cu-O planes of Ba<sub>2</sub>Cu<sub>3</sub>O<sub>4</sub>Cl<sub>2</sub> measured by resonant inelastic x-ray scattering
Fatale, S., Fatuzzo, C. G., Babkevich, P., Shaik, N. E., Pelliciari, J., Lu, X., McNally, D. E., Schmitt, T., Kikkawa, A., Taguchi, Y., Tokura, Y., Normand, B., Rønnow, H. M., & Grioni, M. (2017). Electronic and magnetic excitations in the half-stuffed Cu-O planes of Ba2Cu3O4Cl2 measured by resonant inelastic x-ray scattering. Physical Review B, 96(11), 115149 (9 pp.). https://doi.org/10.1103/PhysRevB.96.115149
Evidence for spin liquid ground state in SrDy<sub>2</sub>O<sub>4</sub> frustrated magnet probed by<em> μ</em>sR
Gauthier, N., Prévost, B., Amato, A., Baines, C., Pomjakushin, V., Bianchi, A. D., Cava, R. J., & Kenzelmann, M. (2017). Evidence for spin liquid ground state in SrDy2O4 frustrated magnet probed by μsR. In J. S. Gardner & Y. J. Kao (Eds.), Journal of physics: conference series: Vol. 828. 8th international conference on highly frustrated magnetism 2016 (p. 012014 (6 pp.). https://doi.org/10.1088/1742-6596/828/1/012014
Field dependence of the magnetic correlations of the frustrated magnet SrDy2 O<sub>4</sub>
Gauthier, N., Fennell, A., Prévost, B., Désilets-Benoit, A., Dabkowska, H. A., Zaharko, O., Frontzek, M., Sibille, R., Bianchi, A. D., & Kenzelmann, M. (2017). Field dependence of the magnetic correlations of the frustrated magnet SrDy2 O4. Physical Review B, 95(18), 184436 (8 pp.). https://doi.org/10.1103/PhysRevB.95.184436
 

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