The van der Waals heterostructures of two-dimensional (2D) atomic crystals constitute a new paradigm in nanoscience. Hybrid devices of graphene with insulating 2D hexagonal boron nitride (h-BN) have emerged as promising nanoelectronic architectures through demonstrations of ultrahigh electron mobilities and charge-based tunnel transistors. Here, we expand the functional horizon of such 2D materials demonstrating the quantum tunneling of spin polarized electrons through atomic planes of CVD grown h-BN. We report excellent tunneling behavior of h-BN layers together with tunnel spin injection and transport in graphene using ferromagnet/h-BN contacts. Employing h-BN tunnel contacts, we observe enhancements in both spin signal amplitude and life...
Two dimensional atomically thin crystals of graphene and its insulating isomorph hexagonal boron nit...
We report on the integration of atomically thin 2D insulating hexagonal boron nitride (h-BN) tunnel ...
We have fabricated graphene spin-valve devices utilizing scalable materials made from chemical vapor...
The van der Waals heterostructures of two-dimensional (2D) atomic crystals constitute a new paradigm...
Hexagonal boron nitride (h-BN) is a large bandgap insulating isomorph of graphene, ideal for atomica...
The current research in graphene spintronics strives for achieving a long spin lifetime, and efficie...
The outstanding spin transport properties of graphene make it an ideal candidate for chip scale spin...
We study room-temperature spin transport in graphene devices encapsulated between a layer-by-layer-s...
The two-dimensional atomically thin insulator hexagonal boron nitride (h-BN) constitutes a new parad...
Spintronics is considered as an alternative for information processing beyond the charge based techn...
The current research in graphene spintronics strives for achieving a long spin lifetime, and efficie...
Two dimensional atomically thin crystals of graphene and its insulating isomorph hexagonal boron nit...
Two dimensional atomically thin crystals of graphene and its insulating isomorph hexagonal boron nit...
We study fully hexagonal boron nitride (hBN) encapsulated graphene spin valve devices at room temper...
Two dimensional atomically thin crystals of graphene and its insulating isomorph hexagonal boron nit...
Two dimensional atomically thin crystals of graphene and its insulating isomorph hexagonal boron nit...
We report on the integration of atomically thin 2D insulating hexagonal boron nitride (h-BN) tunnel ...
We have fabricated graphene spin-valve devices utilizing scalable materials made from chemical vapor...
The van der Waals heterostructures of two-dimensional (2D) atomic crystals constitute a new paradigm...
Hexagonal boron nitride (h-BN) is a large bandgap insulating isomorph of graphene, ideal for atomica...
The current research in graphene spintronics strives for achieving a long spin lifetime, and efficie...
The outstanding spin transport properties of graphene make it an ideal candidate for chip scale spin...
We study room-temperature spin transport in graphene devices encapsulated between a layer-by-layer-s...
The two-dimensional atomically thin insulator hexagonal boron nitride (h-BN) constitutes a new parad...
Spintronics is considered as an alternative for information processing beyond the charge based techn...
The current research in graphene spintronics strives for achieving a long spin lifetime, and efficie...
Two dimensional atomically thin crystals of graphene and its insulating isomorph hexagonal boron nit...
Two dimensional atomically thin crystals of graphene and its insulating isomorph hexagonal boron nit...
We study fully hexagonal boron nitride (hBN) encapsulated graphene spin valve devices at room temper...
Two dimensional atomically thin crystals of graphene and its insulating isomorph hexagonal boron nit...
Two dimensional atomically thin crystals of graphene and its insulating isomorph hexagonal boron nit...
We report on the integration of atomically thin 2D insulating hexagonal boron nitride (h-BN) tunnel ...
We have fabricated graphene spin-valve devices utilizing scalable materials made from chemical vapor...