All Stories

  1. Fluorine‐Free, Auger‐Resistive, and UV‐Emitting MXene Quantum Dots
  2. Observation of Linear Resistance at Low Temperatures in Hole-Doped Degenerate Spin-Valley Semiconductors
  3. Doped, Two-Dimensional, Semiconducting Transition Metal Dichalcogenides in Low-Concentration Regime
  4. Investigation of exciton states of ReS2 by temperature- and polarization-dependent photoluminescence and oxygen plasma treatment
  5. Anomalous Temperature and Polarization Dependences of Photoluminescence of Metal‐Organic Chemical Vapor Deposition‐Grown GeSe2
  6. Electrically tunable magnetic fluctuations in multilayered vanadium-doped tungsten diselenide
  7. Incommensurate Antiferromagnetic Order in Weakly Frustrated Two-Dimensional van der Waals Insulator CrPSe3
  8. High Pressure‐Driven Magnetic Disorder and Structural Transformation in Fe3GeTe2: Emergence of a Magnetic Quantum Critical Point
  9. CNT-molecule-CNT (1D-0D-1D) van der Waals integration ferroelectric memory with 1-nm2 junction area
  10. Defect‐Engineered Magnetic Field Dependent Optoelectronics of Vanadium Doped Tungsten Diselenide Monolayers
  11. Escalating Ferromagnetic Order via Se‐Vacancies Near Vanadium in WSe2 Monolayers
  12. Light-emitting Ti2N (MXene) quantum dots: synthesis, characterization and theoretical calculations
  13. Spin-Selective Hole–Exciton Coupling in a V-Doped WSe2 Ferromagnetic Semiconductor at Room Temperature
  14. Gate‐Tunable Magnetism via Resonant Se‐Vacancy Levels in WSe2
  15. Doping-Mediated Lattice Engineering of Monolayer ReS2 for Modulating In-Plane Anisotropy of Optical and Transport Properties
  16. Light‐Controlled Room Temperature Ferromagnetism in Vanadium‐Doped Tungsten Disulfide Semiconducting Monolayers
  17. Evidence of itinerant holes for long-range magnetic order in the tungsten diselenide semiconductor with vanadium dopants
  18. Probing giant Zeeman shift in vanadium-doped WSe2 via resonant magne...
  19. Author Correction: Layer-controlled single-crystalline graphene film with stacking order via Cu–Si alloy formation
  20. Schottky-barrier quantum well in two-dimensional semiconductor nanotransistors
  21. Li Intercalation Effects on Interface Resistances of High‐Speed and Low‐Power WSe2 Field‐Effect Transistors
  22. Layer-controlled single-crystalline graphene film with stacking order via Cu–Si alloy formation
  23. Gate modulation of the long-range magnetic order in a vanadium-doped WSe2 semiconductor
  24. Long-range ferromagnetic ordering in vanadium-doped WSe2 semiconductor
  25. Probing Multiphased Transition in Bulk MoS2 by Direct Electron Injection
  26. Proximity Engineering of the van der Waals Interaction in Multilayered Graphene
  27. Revealing antiferromagnetic transition of van der Waals MnPS3 via vertical tunneling electrical resistance measurement
  28. Electrically tunable quantum emitters in an ultrathin graphene–hexagonal boron nitride van der Waals heterostructure
  29. V2Se: a novel antifluorite-type cubic phase with a metal–metal bonding
  30. van der Waals Metallic Transition Metal Dichalcogenides
  31. van der Waals Layered Materials: Opportunities and Challenges
  32. Correction to Raman Characterization of the Charge Density Wave Phase of 1T-TiSe2: From Bulk to Atomically Thin Layers
  33. Raman Characterization of the Charge Density Wave Phase of 1T-TiSe2: From Bulk to Atomically Thin Layers
  34. Hot Carrier Extraction from Multilayer Graphene
  35. Stranski–Krastanov and Volmer–Weber CVD Growth Regimes To Control the Stacking Order in Bilayer Graphene
  36. Oxidize Graphene by UV-Ozone Treatment in Vacuum Chamber
  37. High Performance Graphene-Oxide-Metal Diode through Bias-Induced Barrier Height Modulation
  38. Ab initiocomputation of the transition temperature of the charge density wave transition inTiSe2
  39. Publisher's Note: “Thin-layer black phosphorus/GaAs heterojunction p-n diodes” [Appl. Phys. Lett. 106, 233110 (2015)]
  40. Chemically Modulated Band Gap in Bilayer Graphene Memory Transistors with High On/Off Ratio
  41. Graphene/ferroelectrics/graphene hybrid structure: Asymmetric doping of graphene layers
  42. Thin-layer black phosphorus/GaAs heterojunction p-n diodes
  43. Different mechanism of capacitance change for gas detection using semiconducting and metallic single-walled carbon nanotubes
  44. Direct growth of etch pit-free GaN crystals on few-layer graphene
  45. Seamless Stitching of Graphene Domains on Polished Copper (111) Foil
  46. Charge Transport in Polycrystalline Graphene: Challenges and Opportunities
  47. Confocal absorption spectral imaging of MoS2: optical transitions depending on the atomic thickness of intrinsic and chemically doped MoS2
  48. Nondestructive Characterization of Graphene Defects
  49. Transferred wrinkled Al2O3 for highly stretchable and transparent graphene–carbon nanotube transistors
  50. Probing graphene grain boundaries with optical microscopy
  51. Band-gap engineering in chemically conjugated bilayer graphene:Ab initiocalculations
  52. Spectroscopic Determination of the Electrochemical Potentials of n-Type Doped Carbon Nanotubes
  53. Origin of unipolarity in carbon nanotube field effect transistors
  54. Alumina-coated silicon-based nanowire arrays for high quality Li-ion battery anodes
  55. Negative and Positive Persistent Photoconductance in Graphene
  56. UV-LIGHT-ASSISTED OXIDATIVE sp3 HYBRIDIZATION OF GRAPHENE
  57. Facile Physical Route to Highly Crystalline Graphene
  58. Improving the wettability of aluminum on carbon nanotubes
  59. Ultra-Transparent, Flexible Single-walled Carbon Nanotube Non-volatile Memory Device with an Oxygen-decorated Graphene Electrode
  60. Role of Anions in the AuCl3-Doping of Carbon Nanotubes
  61. Humidity-assisted selective reactivity between NO2 and SO2 gas on carbon nanotubes
  62. Transparent Organic P-Dopant in Carbon Nanotubes: Bis(trifluoromethanesulfonyl)imide
  63. Carbon Nanotube Doping Mechanism in a Salt Solution and Hygroscopic Effect: Density Functional Theory
  64. Hygroscopic Effects on AuCl3-Doped Carbon Nanotubes
  65. Breaking AB stacking order in graphite oxide: ab initio approach