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Ultrahigh-mobility graphene devices from chemical vapor deposition on  reusable copper | Science Advances
Ultrahigh-mobility graphene devices from chemical vapor deposition on reusable copper | Science Advances

Comparison of mobility extraction methods based on field-effect  measurements for graphene: AIP Advances: Vol 5, No 5
Comparison of mobility extraction methods based on field-effect measurements for graphene: AIP Advances: Vol 5, No 5

High mobility graphene ion-sensitive field-effect transistors by  noncovalent functionalization - Nanoscale (RSC Publishing)
High mobility graphene ion-sensitive field-effect transistors by noncovalent functionalization - Nanoscale (RSC Publishing)

Comparison of mobility extraction methods based on field-effect  measurements for graphene: AIP Advances: Vol 5, No 5
Comparison of mobility extraction methods based on field-effect measurements for graphene: AIP Advances: Vol 5, No 5

Electron mobility calculation for graphene on substrates: Journal of  Applied Physics: Vol 116, No 8
Electron mobility calculation for graphene on substrates: Journal of Applied Physics: Vol 116, No 8

Mobility and conductivity characteristics of graphene devices a... |  Download Scientific Diagram
Mobility and conductivity characteristics of graphene devices a... | Download Scientific Diagram

High mobility flexible graphene field-effect transistors and ambipolar  radio-frequency circuits - Nanoscale (RSC Publishing)
High mobility flexible graphene field-effect transistors and ambipolar radio-frequency circuits - Nanoscale (RSC Publishing)

Ultrahigh electron mobility in suspended graphene - ScienceDirect
Ultrahigh electron mobility in suspended graphene - ScienceDirect

PDF] Unusually strong temperature dependence of graphene electron mobility  | Semantic Scholar
PDF] Unusually strong temperature dependence of graphene electron mobility | Semantic Scholar

PDF] High mobility dry-transferred CVD bilayer graphene | Semantic Scholar
PDF] High mobility dry-transferred CVD bilayer graphene | Semantic Scholar

A curved graphene nanoribbon with multi-edge structure and high intrinsic  charge carrier mobility — Professur für Molekulare Funktionsmaterialien —  TU Dresden
A curved graphene nanoribbon with multi-edge structure and high intrinsic charge carrier mobility — Professur für Molekulare Funktionsmaterialien — TU Dresden

High-Mobility, Wet-Transferred Graphene Grown by Chemical Vapor Deposition  | ACS Nano
High-Mobility, Wet-Transferred Graphene Grown by Chemical Vapor Deposition | ACS Nano

Electron mobility modulation in graphene oxide by controlling carbon melt  lifetime - ScienceDirect
Electron mobility modulation in graphene oxide by controlling carbon melt lifetime - ScienceDirect

Tue Gunst: Mobility of graphene in a perpendicular electric field -  CarbOnlineHagen 2021
Tue Gunst: Mobility of graphene in a perpendicular electric field - CarbOnlineHagen 2021

Electrical Transport in Graphene: Carrier Scattering by Impurities and  Phonons (Chapter 2) - 2D Materials
Electrical Transport in Graphene: Carrier Scattering by Impurities and Phonons (Chapter 2) - 2D Materials

Phonon-limited mobility in graphene using the Boltzmann transport equation  | QuantumATK U-2022.12 Documentation
Phonon-limited mobility in graphene using the Boltzmann transport equation | QuantumATK U-2022.12 Documentation

Ultrahigh-mobility graphene devices from chemical vapor deposition on  reusable copper | Science Advances
Ultrahigh-mobility graphene devices from chemical vapor deposition on reusable copper | Science Advances

Mobility curves of graphene FETs with and without top-gate compared to... |  Download Scientific Diagram
Mobility curves of graphene FETs with and without top-gate compared to... | Download Scientific Diagram

Direct measurements of conductivity and mobility in millimeter-sized  single-crystalline graphene via van der Pauw geometry
Direct measurements of conductivity and mobility in millimeter-sized single-crystalline graphene via van der Pauw geometry

Direct measurements of conductivity and mobility in millimeter-sized  single-crystalline graphene via van der Pauw geometry
Direct measurements of conductivity and mobility in millimeter-sized single-crystalline graphene via van der Pauw geometry

Electrons in Graphene can Travel 100 Times Faster than in Silicon | MRSEC
Electrons in Graphene can Travel 100 Times Faster than in Silicon | MRSEC

Graphene - Wikipedia
Graphene - Wikipedia

Theoretical Predictions of Size-Dependent Carrier Mobility and Polarity in  Graphene | Journal of the American Chemical Society
Theoretical Predictions of Size-Dependent Carrier Mobility and Polarity in Graphene | Journal of the American Chemical Society