Quasi one-dimensional semiconductor nanowires (NWs) in either arrays or single free-standing forms have shown unique optical properties (i.e., light absorption and emission) differently from their thin film or bulk counterparts, presenting new opportunities for achieving enhanced performance and/or functionalities for optoelectronic device applications. However, there is still a lack of understanding of the absorption properties of vertically standing single NWs within an array environment with light coupling from neighboring NWs within certain distances, due to the challenges in fabrication of such devices. In this article, we present a new approach to fabricate single vertically standing NW photodetectors from an ordered InP NW arrays usi...
We present a fabrication scheme of contacting arrays of vertically standing nanowires (NW) for LEDs ...
We present a fabrication scheme of contacting arrays of vertically standing nanowires (NW) for LEDs ...
When modelling the absorption in semiconductor nanowire (NW) arrays for solar cell and photodetector...
Semiconductor nanowire arrays have shown promise for next-generation photovoltaics and photodetectio...
We have studied the interaction of light with an array of vertically oriented III-V semiconductor na...
Both a single III-V semiconductor nanowire and an array of such nanowires have shown promise for sol...
Both a single III-V semiconductor nanowire and an array of such nanowires have shown promise for sol...
One-dimensional nanostructure arrays can show fascinatingly different, tunable optical response comp...
We demonstrate experimentally that arrays of base-tapered InP nanowires on top of an InP substrate f...
We demonstrate experimentally that arrays of base-tapered InP nanowires on top of an InP substrate f...
We demonstrate experimentally that arrays of base-tapered InP nanowires on top of an InP substrate f...
We demonstrate experimentally that arrays of base-tapered InP nanowires on top of an InP substrate f...
One-dimensional nanostructure arrays can show fascinatingly different, tunable optical response comp...
We demonstrate experimentally that arrays of base-tapered InP nanowires on top of an InP substrate f...
We demonstrate experimentally that arrays of base-tapered InP nanowires on top of an InP substrate f...
We present a fabrication scheme of contacting arrays of vertically standing nanowires (NW) for LEDs ...
We present a fabrication scheme of contacting arrays of vertically standing nanowires (NW) for LEDs ...
When modelling the absorption in semiconductor nanowire (NW) arrays for solar cell and photodetector...
Semiconductor nanowire arrays have shown promise for next-generation photovoltaics and photodetectio...
We have studied the interaction of light with an array of vertically oriented III-V semiconductor na...
Both a single III-V semiconductor nanowire and an array of such nanowires have shown promise for sol...
Both a single III-V semiconductor nanowire and an array of such nanowires have shown promise for sol...
One-dimensional nanostructure arrays can show fascinatingly different, tunable optical response comp...
We demonstrate experimentally that arrays of base-tapered InP nanowires on top of an InP substrate f...
We demonstrate experimentally that arrays of base-tapered InP nanowires on top of an InP substrate f...
We demonstrate experimentally that arrays of base-tapered InP nanowires on top of an InP substrate f...
We demonstrate experimentally that arrays of base-tapered InP nanowires on top of an InP substrate f...
One-dimensional nanostructure arrays can show fascinatingly different, tunable optical response comp...
We demonstrate experimentally that arrays of base-tapered InP nanowires on top of an InP substrate f...
We demonstrate experimentally that arrays of base-tapered InP nanowires on top of an InP substrate f...
We present a fabrication scheme of contacting arrays of vertically standing nanowires (NW) for LEDs ...
We present a fabrication scheme of contacting arrays of vertically standing nanowires (NW) for LEDs ...
When modelling the absorption in semiconductor nanowire (NW) arrays for solar cell and photodetector...