We demonstrate the fabrication of solution processed highly crystalline p-type PbS nanowires via the oriented attachment of nanoparticles. The analysis of single nanowire field effect transistor (FET) devices revealed a hole conduction behaviour with average mobilities greater than 30 cm2 V−1 s−1, which is an order of magnitude higher than that reported to date for p-type PbS colloidal nanowires. We have investigated the response of the FETs to near-infrared light excitation and show herein that the nanowires exhibited gate-dependent photo-conductivities, enabling us to tune the device performances. The responsivity was found to be greater than 104 A W−1 together with a detectivity of 1013 Jones, which benefits from a photogating effect occ...
Chemically synthesized nanocrystal quantum dots (NQDs) are promising materials for applications in s...
A rapid microwave-polyol technique is developed to grow bare-surface sub-10-nm lead sulfide (PbS) co...
PbS colloidal nanocrystals (NCs) are promising materials for optoelectronic devices, due to their si...
We demonstrate the fabrication of solution processed highly crystalline p-type PbS nanowires via the...
We demonstrate the fabrication of solution processed highly crystalline p-type PbS nanowires via the...
We report the controlled and selective doping of colloidal PbSe nanowire arrays to define pn junctio...
We report a simple, controlled doping method for achieving n-type, intrinsic, and p-type lead sulfid...
Single-crystalline straight, zigzag, helical, and branched nanowires can be synthesized by oriented ...
Large PbS protruded cubes, edge- A nd corner-truncated cubes and octahedra, and perfect octahedra wi...
Solution-processed optoelectronic materials offer a route to low cost photodetectors, large area sol...
Colloidal quantum dots have recently attracted lot of interest in the fabrication of optoelectronic ...
Lead chalcogenides with large exciton Bohr radius display strong quantum confinement, which make the...
Spatially resolved optoelectronic investigation can reveal important information on charge transport...
Lead chalcogenides with large exciton Bohr radius display strong quantum confinement, which make the...
We fabricate and investigate field-effect transistors in which a light-absorbing photogate modulates...
Chemically synthesized nanocrystal quantum dots (NQDs) are promising materials for applications in s...
A rapid microwave-polyol technique is developed to grow bare-surface sub-10-nm lead sulfide (PbS) co...
PbS colloidal nanocrystals (NCs) are promising materials for optoelectronic devices, due to their si...
We demonstrate the fabrication of solution processed highly crystalline p-type PbS nanowires via the...
We demonstrate the fabrication of solution processed highly crystalline p-type PbS nanowires via the...
We report the controlled and selective doping of colloidal PbSe nanowire arrays to define pn junctio...
We report a simple, controlled doping method for achieving n-type, intrinsic, and p-type lead sulfid...
Single-crystalline straight, zigzag, helical, and branched nanowires can be synthesized by oriented ...
Large PbS protruded cubes, edge- A nd corner-truncated cubes and octahedra, and perfect octahedra wi...
Solution-processed optoelectronic materials offer a route to low cost photodetectors, large area sol...
Colloidal quantum dots have recently attracted lot of interest in the fabrication of optoelectronic ...
Lead chalcogenides with large exciton Bohr radius display strong quantum confinement, which make the...
Spatially resolved optoelectronic investigation can reveal important information on charge transport...
Lead chalcogenides with large exciton Bohr radius display strong quantum confinement, which make the...
We fabricate and investigate field-effect transistors in which a light-absorbing photogate modulates...
Chemically synthesized nanocrystal quantum dots (NQDs) are promising materials for applications in s...
A rapid microwave-polyol technique is developed to grow bare-surface sub-10-nm lead sulfide (PbS) co...
PbS colloidal nanocrystals (NCs) are promising materials for optoelectronic devices, due to their si...