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Charge-transfer plasmons of complex nanoparticle arrays connected by conductive molecular bridges
Fedorov, A.S., Visotin, M.A., Eremkin, E.V., (...), Ågren, H., Polyutov, S.P.// Physical Chemistry Chemical Physics//
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2022
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Development of discrete interaction models for ultra-fine nanoparticle plasmonics
Sørensen, L.K., Gerasimov, V.S., Karpov, S.V., Ågren, H.// Physical Chemistry Chemical Physics//
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2024
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Electronic transitions and vibrational properties of bulk and monolayer g-C3N4, and a g-C3N4/MoS2 heterostructure from a DFT study
A S Oreshonkov 1 2 3, E V Sukhanova 1, D V Pankin 4, Z I Popov 1// Physical Chemistry Chemical Physics//
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2024
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Stability and gas sensing properties of Ta2X3M8(X = Pd, Pt; M = S, Se) nanoribbons: a first-principles investigation
Sukhanova, Ekaterina, V; Visotin, Maxim A.; Popov, Zakhar, I; Sorokin, Pavel B. Physical Chemistry Chemical Physics., Phys. Chem. Chem. Phys., 2020,22, 14651. ...
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2020
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Temperature phase transitions in silver niobate and lithium tantalate-modified silver niobate ceramics
Krylov, A.S., Krylova, S.N., Vtyurin, A.N., (...), Tian, Y., Wei, X.// Physical Chemistry Chemical Physics//
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2023
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The effect of the composition and pressure on the phase stability and electronic, magnetic, and elastic properties of M(2)AX (M = Mn, Fe; A = Al, Ga, Si, Ge; X = C, N) phases
Zhandun, Vyacheslav S.; Zamkova, Natalia G.; Draganyuk, Oksana N.; Shinkorenko, Aleksey S.; Wiedwald, Ulf; et al./ Physical Chemistry Chemical Physics/
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2022
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XMCD and ab initio study of interface-engineered ultrathin Ru/Co/W/Ru films with perpendicular magnetic anisotropy and strong Dzyaloshinskii-Moriya interaction
Samardak, Alexander S.; Ognev, Alexey, V; Kolesnikov, Alexander G.; Stebliy, Maksim E.; Samardak, Vadim Yu; et al. // Physical Chemistry Chemical Physics//
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2022