Tunable nanoscale graphene magnetometers.
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Summary
Graphene extraordinary magnetoresistance devices that combine the Hall effect and enhanced geometric magnetoreistance are demonstrated, yielding sensitivities rivaling that of state of the art sensors but do so with subnanometer sense layer thickness at the sensor surface.
- Type
- article
- Published
- 2010-01-01
- Cited by
- 64
- References
- 0
- OpenAlex
- https://openalex.org/W1989188246
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:1135201
Keywords
Magnetoresistance, Graphene, Magnetometer, Materials science, Giant magnetoresistance
References
Cited by
- Sub-100-nm negative bend resistance ballistic sensors for high spatial resolution magnetic field detection.
- Structuration and integration of magnetic nanoparticles on surfaces and devices.
- Tunable graphene chem-FET and graphene/Si heterojunction chemi-diode sensors
- Electron transport and Goos–Hänchen shift in graphene with electric and magnetic barriers: optical analogy and band structure
- Exploration of sensitivity limit for graphene magnetic sensors
- Angular dependence of coercivity with temperature in Co-based nanowires
- Hybrid Two-Dimensional Electronic Systems and Other Applications of sp-2 Bonded Light Elements
- Flicker noise and magnetic resolution of graphene hall sensors at low frequency
- Extraordinary magnetoresistance in shunted chemical vapor deposition grown graphene devices
- Large tunable linear magnetoresistance in gold nanoparticle decorated graphene
- Two-dimensional transition metal carbides.
- Unusual magnetic properties of graphene and related materials
- Batch-fabricated high-performance graphene Hall elements
- Magnetoresistance in inhomogeneous graphene/metal hybrids
- Modeling of graphene Hall effect sensors for microbead detection
- Ambipolar graphene field effect transistors by local metal side gates
- Influence of Semiconductor/Metal Interface Geometry in an EMR Sensor
- Fabrication of layered Ti3C2 with an accordion-like structure as a potential cathode material for high performance lithium–sulfur batteries
- Electrostatic transfer of patterned epitaxial graphene from SiC(0001) to glass
- Science and technology roadmap for graphene, related two-dimensional crystals, and hybrid systems.
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