Photocurrent Imaging of p-n Junctions and Local Defects in Ambipolar Carbon Nanotube Transistors
arXiv:0707.3176 · doi:10.1021/nl071536m
Abstract
We use scanning photocurrent microscopy (SPCM) to investigate the properties of internal p-n junctions as well as local defects in ambipolar carbon nanotube (CNT) transistors. Our SPCM images show strong signals near metal contacts whose polarity and positions change depending on the gate bias. SPCM images analyzed in conjunction with the overall conductance also indicate the existence and gate-dependent evolution of internal p-n junctions near contacts in the n-type operation regime. To determine the p-n junction position and the depletion width with a nanometer scale resolution, a Gaussian fit was used. We also measure the electric potential profile of CNT devices at different gate biases, which shows that both local defects and induced electric fields can be imaged using the SPCM technique. Our experiment clearly demonstrates that SPCM is a valuable tool for imaging and optimizing electrical and optoelectronic properties of CNT based devices.
5 pages, 5 figures
References in corpus (4)
Cited by in corpus (13)
- Carbon nanomaterials for electronics, optoelectronics, photovoltaics, and sensing
- Photocurrent imaging and efficient photon detection in a graphene transistor
- The role of contacts in graphene transistors: A scanning photocurrent study
- Atomically thin p-n junctions based on two-dimensional materials
- Uncooled Carbon Nanotube Photodetectors
- Spontaneous exciton dissociation in carbon nanotubes
- Ultrasensitive 1D field-effect phototransistor: CHNHPbI nanowire sensitized individual carbon nanotube
- Imaging ultrafast carrier transport in nanoscale devices using femtosecond photocurrent microscopy
- Identifying signatures of photothermal current in a double-gated semiconducting nanotube
- Antenna-enhanced Optoelectronic Probing of Carbon Nanotubes
- Imaging the formation of a p-n junction in a suspended carbon nanotube with scanning photocurrent microscopy
- Ballistic and resonant negative photocurrents in semiconducting carbon nanotubes
- Computational study of exciton generation in suspended carbon nanotube transistors