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2018
A. G. Kassen, White, E. M. H., Hu, L. F., Tang, W., Zhou, L., Kramer, M. J., and Anderson, I. E., Novel mechanisms for solid-state processing and grain growth with microstructure alignment in alnico-8 based permanent magnets, Aip Advances, vol. 8, p. 056206, 2018.
V. V. Ogloblichev, Smolnikov, A. G., Sadykov, A. F., Piskunov, Y. V., Gerashenko, A. P., Furukawa, Y., Kumagai, K., Yakubovsky, A. Y., Mikhalev, K. N., Barilo, S. N., Shiryaev, S. V., and Belozerov, A. S., O-17 NMR study of the triangular lattice antiferromagnet CuCrO2, Journal of Magnetism and Magnetic Materials, vol. 458, pp. 1-9, 2018.
J. H. Lee, Lee, E. K., Kang, S. G., Jung, S. H., Son, S. K., Nam, W. H., Kim, T. H., Choi, B. L., and Whang, D., One-pot size-controlled growth of graphene-encapsulated germanium nanocrystals, Applied Surface Science, vol. 440, pp. 553-559, 2018.
T. Watanabe, Kobayashi, S., Hara, Y., Xu, J., Lake, B., Yan, J. Q., Niazi, A., and Johnston, D. C., Orbital-and spin-driven lattice instabilities in quasi-one-dimensional CaV2O4, Physical Review B, vol. 98, p. 094427, 2018.
W. H. Brito, Choi, S., Yao, Y. X., and Kotliar, G., Orbital-dependent correlations in PuCoGa5, Physical Review B, vol. 98, p. 035143, 2018.
H. L. Hou, Cui, J., Qian, S. X., Catalini, D., Hwang, Y., Radermacher, R., and Takeuchi, I., Overcoming fatigue through compression for advanced elastocaloric cooling, Mrs Bulletin, vol. 43, pp. 285-290, 2018.
Y. Sun, Song, H. J., Zhang, F., Yang, L., Ye, Z., Mendelev, M. I., Wang, C. Z., and Ho, K. M., Overcoming the Time Limitation in Molecular Dynamics Simulation of Crystal Nucleation: A Persistent-Embryo Approach, Physical Review Letters, vol. 120, p. 085703, 2018.
D. J. Liu and Thiel, P. A., Oxygen and sulfur adsorption on vicinal surfaces of copper and silver: Preferred adsorption sites, Journal of Chemical Physics, vol. 148, p. 124706, 2018.
R. Teyber, Meinhardt, K., Thomsen, E., Polikarpov, E., Cui, J., Rowe, A., Holladay, J., and Barclay, J., Passive force balancing of an active magnetic regenerative liquefier, Journal of Magnetism and Magnetic Materials, vol. 451, pp. 79-86, 2018.
P. Wiecki, Rana, K., Bohmer, A. E., Lee, Y., Bud'ko, S. L., Canfield, P. C., and Furukawa, Y., Persistent correlation between superconductivity and antiferromagnetic fluctuations near a nematic quantum critical point in FeSe1-xSx, Physical Review B, vol. 98, p. 020507, 2018.
P. Xu, Guidez, E. B., Bertoni, C., and Gordon, M. S., Perspective: Ab initio force field methods derived from quantum mechanics, Journal of Chemical Physics, vol. 148, p. 090901, 2018.
A. Basak and Levitas, V. I., Phase field study of surface-induced melting and solidification from a nanovoid: Effect of dimensionless width of void surface and void size, Applied Physics Letters, vol. 112, p. 201602, 2018.
S. J. Deng, Yang, F., Zhang, Q. H., Zhong, Y., Zeng, Y. X., Lin, S. W., Wang, X. L., Lu, X. H., Wang, C. Z., Gu, L., Xia, X. H., and Tu, J. P., Phase Modulation of (1T-2H)-MoSe2/TiC-C Shell/Core Arrays via Nitrogen Doping for Highly Efficient Hydrogen Evolution Reaction, Advanced Materials, vol. 30, p. 1802223, 2018.
P. Manfrinetti, Provino, A., Sangeetha, N. S., and Dhar, S. K., phases, Journal of Materials Chemistry C, vol. 6, pp. 5250-5260, 2018.
Y. C. Fan, Shen, N. H., Zhang, F. L., Zhao, Q., Wei, Z. Y., Zhang, P., Dong, J. J., Fu, Q. H., Li, H. Q., and Soukoulis, C. M., Photoexcited Graphene Metasurfaces: Significantly Enhanced and Tunable Magnetic Resonances, Acs Photonics, vol. 5, pp. 1612-1618, 2018.
A. Garcia, Slowing, I. I., and Evans, J. W., Pore diameter dependence of catalytic activity: p-nitrobenzaldehyde conversion to an aldol product in amine-functionalized mesoporous silica, Journal of Chemical Physics, vol. 149, p. 024101, 2018.
C. Waltmann, Horst, N., and Travesset, A., Potential of mean force for two nanocrystals: Core geometry and size, hydrocarbon unsaturation, and universality with respect to the force field, Journal of Chemical Physics, vol. 149, p. 034109, 2018.
A. Zevalkink, Smiadak, D. M., Blackburn, J. L., Ferguson, A. J., Chabinyc, M. L., Delaire, O., Wang, J., Kovnir, K., Martin, J., Schelhas, L. T., Sparks, T. D., Kang, S. D., Dylla, M. T., Snyder, G. J., Ortiz, B. R., and Toberer, E. S., A practical field guide to thermoelectrics: Fundamentals, synthesis, and characterization, Applied Physics Reviews, vol. 5, p. 021303, 2018.
P. Wiecki, Taufour, V., Chung, D. Y., Kanatzidis, M. G., Bud'ko, S. L., Canfield, P. C., and Furukawa, Y., Pressure dependence of coherence-incoherence crossover behavior in KFe2As2 observed by resistivity and As-75-NMR/NQR, Physical Review B, vol. 97, p. 064509, 2018.
L. Xiang, Ribeiro, R. A., Kaluarachchi, U. S., Gati, E., Nguyen, M. C., Wang, C. Z., Ho, K. M., Bud'ko, S. L., and Canfield, P. C., Pressure-induced multiple phase transformations of the BaBi3 superconductor, Physical Review B, vol. 98, p. 214509, 2018.
L. Xiang, Meier, W. R., Xu, M. Y., Kaluarachchi, U. S., Bud'ko, S. L., and Canfield, P. C., Pressure-temperature phase diagrams of CaK(Fe1-xNix)(4)As-4 superconductors, Physical Review B, vol. 97, p. 174517, 2018.
W. Liu, Wu, Y. F., Li, X. J., Bud'ko, S. L., Canfield, P. C., Panagopoulos, C., Li, P. G., Mu, G., Hu, T., Almasan, C. C., and Xiao, H., Pressure-tuned superconductivity and normal-state behavior in Ba(Fe0.943Co0.057)(2)As-2 near the antiferromagnetic boundary, Physical Review B, vol. 97, p. 144515, 2018.
O. Cyr-Choiniere, Daou, R., Laliberte, F., Collignon, C., Badoux, S., LeBoeuf, D., Chang, J., Ramshaw, B. J., Bonn, D. A., Hardy, W. N., Liang, R., Yan, J. Q., Cheng, J. G., Zhou, J. S., Goodenough, J. B., Pyon, S., Takayama, T., Takagi, H., Doiron-Leyraud, N., and Taillefer, L., Pseudogap temperature T* of cuprate superconductors from the Nernst effect, Physical Review B, vol. 97, p. 064502, 2018.
U. S. Kaluarachchi, Taufour, V., Bud'ko, S. L., and Canfield, P. C., Quantum tricritical point in the temperature-pressure-magnetic field phase diagram of CeTiGe3, Physical Review B, vol. 97, p. 045139, 2018.
H. A. Khazdozian, Manzano, J. S., Gandha, K., Slowing, I. I., and Nlebedim, I. C., Recycled Sm-Co bonded magnet filaments for 3D printing of magnets, Aip Advances, vol. 8, p. 056722, 2018.

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