Ferroelectric-like SrTiO3 surface dipoles probed by graphene
arXiv:1401.2222 · doi:10.1038/srep03657
Abstract
The electrical transport properties of graphene are greatly influenced by its environment. Owing to its high dielectric constant, strontium titanate (STO) is expected to suppress the long-range charged impurity scattering and consequently to enhance the mobility. However, the absence of such enhancement has caused some controversies regarding the scattering mechanism. In graphene devices transferred from SiO2 to STO using a newly developed technique, we observe a moderate mobility enhancement near the Dirac point, which is the point of charge neutrality achieved by adjusting the Fermi level. While bulk STO is not known as a ferroelectric material, its surface was previously reported to exhibit an outward displacement of oxygen atoms and ferroelectric-like dipole moment. When placed on STO, graphene shows strong and asymmetric hysteresis in resistivity, which is consistent with the dipole picture associated with the oxygen displacement. The hysteretic response of the surface dipole moment diminishes the polarizability, therefore weakens the ability of STO to screen the Coulomb potential of the impurities.
References in corpus (10)
- Boron nitride substrates for high-quality graphene electronics
- Suspended Graphene: a bridge to the Dirac point
- Intrinsic and Extrinsic Performance Limits of Graphene Devices on SiO2
- Temperature dependent transport in suspended graphene
- Emergence of Superlattice Dirac Points in Graphene on Hexagonal Boron Nitride
- Measurement of Scattering Rate and Minimum Conductivity in Graphene
- Tuning the effective fine structure constant in graphene: opposing effects of dielectric screening on short- and long-range potential scattering
- The Effect of Cluster Formation on Graphene Mobility
- Probing charge scattering mechanisms in suspended graphene by varying its dielectric environment
- Scattering mechanisms and Boltzmann transport in graphene
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