The current research in graphene spintronics strives for achieving a long spin lifetime, and efficient spin injection and detection in graphene. In this article, we review how hexagonal boron nitride (hBN) has evolved as a crucial substrate, as an encapsulation layer, and as a tunnel barrier for manipulation and control of spin lifetimes and spin injection/detection polarizations in graphene spin valve devices. First, we give an overview of the challenges due to conventional SiO2/Si substrate for spin transport in graphene followed by the progress made in hBN based graphene heterostructures. Then we discuss in detail the shortcomings and developments in using conventional oxide tunnel barriers for spin injection into graphene followed by in...
Spintronics is considered as an alternative for information processing beyond the charge based techn...
Two dimensional atomically thin crystals of graphene and its insulating isomorph hexagonal boron nit...
We have fabricated graphene spin-valve devices utilizing scalable materials made from chemical vapor...
The current research in graphene spintronics strives for achieving a long spin lifetime, and efficie...
Hexagonal boron nitride (h-BN) is a large bandgap insulating isomorph of graphene, ideal for atomica...
We study fully hexagonal boron nitride (hBN) encapsulated graphene spin valve devices at room temper...
We study room-temperature spin transport in graphene devices encapsulated between a layer-by-layer-s...
The van der Waals heterostructures of two-dimensional (2D) atomic crystals constitute a new paradigm...
The outstanding spin transport properties of graphene make it an ideal candidate for chip scale spin...
We study spin transport in a fully hBN encapsulated monolayer-graphene van der Waals heterostructure...
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 characterize the spin injection into bilayer graphene fully encapsulated in hexagonal boron nitri...
We study the spin injection efficiency into single and bilayer graphene on the ferrimagnetic insulat...
Two dimensional atomically thin crystals of graphene and its insulating isomorph hexagonal boron nit...
Spintronics is considered as an alternative for information processing beyond the charge based techn...
Two dimensional atomically thin crystals of graphene and its insulating isomorph hexagonal boron nit...
We have fabricated graphene spin-valve devices utilizing scalable materials made from chemical vapor...
The current research in graphene spintronics strives for achieving a long spin lifetime, and efficie...
Hexagonal boron nitride (h-BN) is a large bandgap insulating isomorph of graphene, ideal for atomica...
We study fully hexagonal boron nitride (hBN) encapsulated graphene spin valve devices at room temper...
We study room-temperature spin transport in graphene devices encapsulated between a layer-by-layer-s...
The van der Waals heterostructures of two-dimensional (2D) atomic crystals constitute a new paradigm...
The outstanding spin transport properties of graphene make it an ideal candidate for chip scale spin...
We study spin transport in a fully hBN encapsulated monolayer-graphene van der Waals heterostructure...
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 characterize the spin injection into bilayer graphene fully encapsulated in hexagonal boron nitri...
We study the spin injection efficiency into single and bilayer graphene on the ferrimagnetic insulat...
Two dimensional atomically thin crystals of graphene and its insulating isomorph hexagonal boron nit...
Spintronics is considered as an alternative for information processing beyond the charge based techn...
Two dimensional atomically thin crystals of graphene and its insulating isomorph hexagonal boron nit...
We have fabricated graphene spin-valve devices utilizing scalable materials made from chemical vapor...