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Inicio > Publicaciones > Artículos Científicos > 2017


  1. 281- Quantum spin Hall insulators in centrosymmetric thin films composed from topologically trivial BiTeI trilayers.

    Nechaev IA, Eremeev SV, Krasovskii EE, Echenique PM, and Chulkov EV.

    Scientific Reports 7, 43666 (2017).

  2. 282- Spin-resolved band structure of heterojunction Bi-bilayer/3D topological insulator in the quantum dimension regime in annealed Bi2Te2.4Se0.6.

    Klimovskikh II, Sostina D, Petukhov A, Rybkin AG, Eremeev SV, Chulkov EV, Tereshchenko OE, Kokh KA, and Shikin AM.

    Scientific reports 7, 45797 (2017).

  3. 283- Quantum nuclear dynamics of protons within layered hydroxides at high pressure.

    Dupuis R, Dolado JS, Benoit M, Surga J, and Ayuela A.

    Scientific Reports 7, 4842 (2017).

  4. 284- Tuning the Fermi velocity in Dirac materials with an electric field.

    Diaz-Fernandez A, Chico L, Gonzalez JW, and Dominguez-Adame F.

    Scientific Reports 7, 8058 (2017).

  5. 285- Kinetic Monte Carlo method for the simulation of anisotropic wet etching of quartz.

    Zhang H, Xing Y, Li Y, Gosalvez MA, and Qiu XL.

    Sensors and Actuators A-Physical 256, 24 (2017). Pages: 24

  6. 286- Measuring the spin-polarization power of a single chiral molecule.

    Aragonès AC, Medina E, Ferrer-Huerta M, Gimeno N, Teixidó M, Palma JL, Tao N, Ugalde JM, Giralt E, Díez-Pérez I, and Mujica V.

    Small 13, 1602519 (2017).

  7. 287- Ionic transport in the amorphous phase of semicrystalline polyethylene oxide thin films.

    Martinez-Tong DE, Miccio LA, and Alegria A.

    Soft Matter 13, 5597 (2017).

  8. 288- Effects of precursor topology and synthesis under crowding conditions on the structure of single-chain polymer nanoparticles.

    Formanek M, and Moreno AJ.

    Soft Matter 13, 6430 (2017).

  9. 289- Triel bonds-complexes of boron and aluminum trihalides and trihydrides with benzene.

    Grabowski SJ.

    Structural Chemistry 28, 1163 (2017).

  10. 290- Adatom doping-enriched geometric and electronic properties of pristine graphene: a method to modify the band gap.

    Tran NTT, Dahal D, Gumbs G, and Lin MF.

    Structural Chemistry 28, 1311 (2017).

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