4.6 Article

Bottom-up graphene nanoribbon field-effect transistors

相关参考文献

注意:仅列出部分参考文献,下载原文获取全部文献信息。
Article Chemistry, Multidisciplinary

States Modulation in Graphene Nanoribbons through Metal Contacts

Chloe Archambault et al.

ACS NANO (2013)

Article Chemistry, Multidisciplinary

Tuning the Band Gap of Graphene Nanoribbons Synthesized from Molecular Precursors

Yen-Chia Chen et al.

ACS NANO (2013)

Article Chemistry, Multidisciplinary

Reducing Contact Resistance in Graphene Devices through Contact Area Patterning

Joshua T. Smith et al.

ACS NANO (2013)

Article Multidisciplinary Sciences

Suppression of electron-vibron coupling in graphene nanoribbons contacted via a single atom

Joost van der Lit et al.

NATURE COMMUNICATIONS (2013)

Article Chemistry, Multidisciplinary

Electronic Structure of Atomically Precise Graphene Nanoribbons

Pascal Ruffieux et al.

ACS NANO (2012)

Article Chemistry, Multidisciplinary

Variability in Carbon Nanotube Transistors: Improving Device-to-Device Consistency

Aaron D. Franklin et al.

ACS NANO (2012)

Article Nanoscience & Nanotechnology

Voltage-dependent conductance of a single graphene nanoribbon

Matthias Koch et al.

NATURE NANOTECHNOLOGY (2012)

Article Physics, Multidisciplinary

Electronic Structure of Spatially Aligned Graphene Nanoribbons on Au(788)

S. Linden et al.

PHYSICAL REVIEW LETTERS (2012)

Article Multidisciplinary Sciences

Spatially Resolved Electronic Structures of Atomically Precise Armchair Graphene Nanoribbons

Han Huang et al.

SCIENTIFIC REPORTS (2012)

Article Nanoscience & Nanotechnology

The origins and limits of metal-graphene junction resistance

Fengnian Xia et al.

NATURE NANOTECHNOLOGY (2011)

Article Multidisciplinary Sciences

Atomically precise bottom-up fabrication of graphene nanoribbons

Jinming Cai et al.

NATURE (2010)

Article Nanoscience & Nanotechnology

Length scaling of carbon nanotube transistors

Aaron D. Franklin et al.

NATURE NANOTECHNOLOGY (2010)

Article Physics, Applied

Field effect on spin-polarized transport in graphene nanoribbons

Jing Guo et al.

APPLIED PHYSICS LETTERS (2008)

Article Nanoscience & Nanotechnology

Prediction of very large values of magnetoresistance in a graphene nanoribbon device

Woo Youn Kim et al.

NATURE NANOTECHNOLOGY (2008)

Article Physics, Multidisciplinary

Room-temperature all-semiconducting sub-10-nm graphene nanoribbon field-effect transistors

Xinran Wang et al.

PHYSICAL REVIEW LETTERS (2008)

Article Multidisciplinary Sciences

Chemically derived, ultrasmooth graphene nanoribbon semiconductors

Xiaolin Li et al.

SCIENCE (2008)

Article Nanoscience & Nanotechnology

Graphene nano-ribbon electronics

Zhihong Chen et al.

PHYSICA E-LOW-DIMENSIONAL SYSTEMS & NANOSTRUCTURES (2007)

Article Materials Science, Multidisciplinary

Selection rule for the optical absorption of graphene nanoribbons

Han Hsu et al.

PHYSICAL REVIEW B (2007)

Article Physics, Multidisciplinary

Energy band-gap engineering of graphene nanoribbons

Melinda Y. Han et al.

PHYSICAL REVIEW LETTERS (2007)

Article Engineering, Electrical & Electronic

Performance projections for ballistic graphene nanoribbon field-effect transistors

Gengchiau Liang et al.

IEEE TRANSACTIONS ON ELECTRON DEVICES (2007)

Correction Multidisciplinary Sciences

Half-metallic graphene nanoribbons (vol 444, pg 347, 2006)

Young-Woo Son et al.

NATURE (2007)

Article Chemistry, Multidisciplinary

Ballistic transport in graphene nanostrips in the presence of disorder: Importance of edge effects

Denis A. Areshkin et al.

NANO LETTERS (2007)

Article Physics, Multidisciplinary

Energy gaps in graphene nanoribbons

Young-Woo Son et al.

PHYSICAL REVIEW LETTERS (2006)

Article Engineering, Electrical & Electronic

Overview and status of metal S/D Schottky-barrier MOSFET technology

JM Larson et al.

IEEE TRANSACTIONS ON ELECTRON DEVICES (2006)

Article Chemistry, Multidisciplinary

Hysteresis caused by water molecules in carbon nanotube field-effect transistors

W Kim et al.

NANO LETTERS (2003)

Article Materials Science, Multidisciplinary

Linewidth of the Raman features of individual single-wall carbon nanotubes -: art. no. 115411

A Jorio et al.

PHYSICAL REVIEW B (2002)

Article Physics, Multidisciplinary

Carbon nanotubes as Schottky barrier transistors

S Heinze et al.

PHYSICAL REVIEW LETTERS (2002)

Article Physics, Applied

Controlling doping and carrier injection in carbon nanotube transistors

V Derycke et al.

APPLIED PHYSICS LETTERS (2002)