Large magnetoresistance at room-temperature in semiconducting polymer sandwich devices
arXiv:cond-mat/0409753 · doi:10.1088/1367-2630/6/1/185
Abstract
We report on the discovery of a large, room temperature magnetoresistance (MR) effect in polyfluorene sandwich devices in weak magnetic fields. We characterize this effect and discuss its dependence on voltage, temperature, film thickness, electrode materials, and (unintentional) impurity concentration. We usually observed negative MR, but positive MR can also be achieved under high applied electric fields. The MR effect reaches up to 10% at fields of 10mT at room temperature. The effect shows only a weak temperature dependence and is independent of the sign and direction of the magnetic field. We find that the effect is related to the hole current in the devices.
3 pages, 4 figures
Cited by in corpus (32)
- Large magnetoresistance in -conjugated semiconductor thin film devices
- Spin relaxation in a nanowire organic spin valve: Observation of extremely long spin relaxation times
- Hyperfine interaction and magnetoresistance in organic semiconductors
- Large magnetoresistance at room-temperature in small molecular weight organic semiconductor sandwich devices
- Spin-flip induced magnetoresistance in positionally disordered organic solids
- Molecular Spintronics
- The role of electron-hole recombination in organic magnetoresistance
- Tunneling anisotropic magnetoresistance in organic spin valves
- Elucidating the role of hyperfine interactions on organic magnetoresistance using deuterated aluminium tris(8-hydroxyquinoline)
- Hanle effect missing in a prototypical organic spintronic device
- Vertical organic spin valves in perpendicular magnetic fields
- Organic Magnetoelectroluminescence for Room Temperature Transduction between Magnetic and Optical Information
- Direct measurement of the magnetic field effects on carrier mobilities and recombination in tri-(8-hydroxyquinoline)-aluminum based light-emitting diodes
- The effects of spin-spin interactions on magnetoresistance in disordered organic semiconductors
- Device-spectroscopy of magnetic field effects in a polyfluorene organic light-emitting diode
- Magneto-electroluminescence of organic heterostructures: Analytical theory and spectrally resolved measurements
- Investigation on organic magnetoconductance based on polaron-bipolaron transition
- Pauli spin blockade and the ultrasmall magnetic field effect
- OLEDs as models for bird magnetoception: detecting electron spin resonance in geomagnetic fields
- Organic magnetoresistance under resonant ac drive
- Organic magnetoresistance from deep traps
- Hysteretic magnetoresistance in polymeric diodes
- Exciton-polaron complexes in pulsed electrically-detected magnetic resonance
- Including fringe fields from a nearby ferromagnet in a percolation theory of organic magnetoresistance
- A theory for magnetic-field effects of nonmagnetic organic semiconducting materials
- Towards printed magnetic sensors based on organic diodes
- Organic magnetoresistance near saturation: mesoscopic effects in small devices
- Magnetoresistance from quenching of spin quantum correlation in organic semiconductors
- Anomalous organic magnetoresistance from competing carrier-spin-dependent interactions with localized electronic and nuclear spins
- Slow dynamics of spin pairs in random hyperfine field: Role of inequivalence of electrons and holes in organic magnetoresistance
- Spin dynamics and spin-dependent recombination of a polaron pair under a strong ac drive
- Enhancing Light Emission in Interface Engineered Spin-OLEDs Through Spin-Polarized Injection at High Voltages