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Enhanced Spin Injection in Molecularly Functionalized Graphene via Ultrathin Oxide Barriers
ArticleAbstract: The realization of practical spintronic devices relies on the ability to create and detect pure spinPalabras claves:Autores:Anderson C.R., Bandurin D.A., Grigorieva I.V., Natera-Cordero N., Toscano-Figueroa J.C., Vera-Marun I.J., Víctor H. Guarochico-MoreiraFuentes:googlescopusTunable Spin Injection in High-Quality Graphene with One-Dimensional Contacts
ArticleAbstract: Spintronics involves the development of low-dimensional electronic systems with potential use in quaPalabras claves:1D contacts, Graphene, hBN, spin injection, van der Waals devicesAutores:Anderson C.R., Bandurin D.A., Grigorieva I.V., Natera-Cordero N., Omari K., Sambricio J.L., Taniguchi T., Toscano-Figueroa J.C., Vera-Marun I.J., Víctor H. Guarochico-Moreira, Watanabe K.Fuentes:googlescopusWien effect in interfacial water dissociation through proton-permeable graphene electrodes
ArticleAbstract: Strong electric fields can accelerate molecular dissociation reactions. The phenomenon known as thePalabras claves:Autores:Barry D., Cai J., Geim A.K., Griffin E., Lozada-Hidalgo M., Peeters F.M., Víctor H. Guarochico-Moreira, Xin B., Yagmurcukardes M., Zhang S.Fuentes:googlescopusProton and Li-Ion Permeation through Graphene with Eight-Atom-Ring Defects
ArticleAbstract: Defect-free graphene is impermeable to gases and liquids but highly permeable to thermal protons. AtPalabras claves:Battery, Disorder, Fuel Cell, Graphene, lithium ion, ProtonAutores:Bacaksiz C., Cai J., Cheng H.M., Geim A.K., Griffin E., Grigorieva I.V., Hao G.P., Kaiser U., Kalon G., Lee J.H., Lin J., Lopez-Polin G., Lozada-Hidalgo M., Mogg L., Mohn M., Neumann C., Özyilmaz B., Peeters F.M., Ren W., Suenaga K., Turchanin A., Víctor H. Guarochico-Moreira, Winter A., Zhou T.Y.Fuentes:googlescopus