We report conformal, epitaxial growth of GaP layers on arrays of Si microwires. Silicon wires grown using chlorosilane chemical vapor deposition were coated with GaP grown by metal-organic chemical vapor deposition. The crystalline quality of conformal, epitaxial GaP/Si wire arrays was assessed by transmission electron microscopy and x-ray diffraction. Hall measurements and photoluminescence show p- and n-type doping with high electron mobility and bright optical emission. GaP pn homojunction diodes on planar reference samples show photovoltaic response with an open circuit voltage of 660 mV
Silicon wire arrays, though attractive materials for use in photovoltaics and as photocathodes for h...
© 2016 Elsevier Inc. Photovoltaic (PV) devices based on arrays of silicon wires with diameters in th...
The effective electron minority-carrier diffusion length, L_(n,eff), for 2.0 µm diameter Si wires th...
Crystalline Si wires, grown by the vapor–liquid–solid (VLS) process, have emerged as promising cand...
Photovoltaic energy conversion represents a economically viable technology for realizing collection ...
Si wire arrays have recently demonstrated their potential as photovoltaic devices [1-3]. Using thes...
Crystalline Si wires, grown by the vapor–liquid–solid (VLS) process, have emerged as promising candi...
Silicon wire arrays, though attractive materials for use in photovoltaics and as photocathodes for h...
Abstract — Tandem Ga1-xInxP/Si microwire array solar cells are a route towards a high efficiency, l...
Silicon microwire arrays have recently demonstrated their potential for low cost, high efficiency ph...
Si microwire (Si MW) arrays grown by the vapor-liquid-solid (VLS) process are promising materials fo...
By allowing for the fabrication of flexible crystalline-Si (c-Si) solar cells that employ ~1/100th) ...
Si-nanowires are being introduced as an attempt to decrease the high recombination rate present in s...
The favorable bandgap and natural abundance of Si, combined with the large expertise base for semico...
In an effort to develop low-cost solar energy conversion techniques, high uniformity vertically orie...
Silicon wire arrays, though attractive materials for use in photovoltaics and as photocathodes for h...
© 2016 Elsevier Inc. Photovoltaic (PV) devices based on arrays of silicon wires with diameters in th...
The effective electron minority-carrier diffusion length, L_(n,eff), for 2.0 µm diameter Si wires th...
Crystalline Si wires, grown by the vapor–liquid–solid (VLS) process, have emerged as promising cand...
Photovoltaic energy conversion represents a economically viable technology for realizing collection ...
Si wire arrays have recently demonstrated their potential as photovoltaic devices [1-3]. Using thes...
Crystalline Si wires, grown by the vapor–liquid–solid (VLS) process, have emerged as promising candi...
Silicon wire arrays, though attractive materials for use in photovoltaics and as photocathodes for h...
Abstract — Tandem Ga1-xInxP/Si microwire array solar cells are a route towards a high efficiency, l...
Silicon microwire arrays have recently demonstrated their potential for low cost, high efficiency ph...
Si microwire (Si MW) arrays grown by the vapor-liquid-solid (VLS) process are promising materials fo...
By allowing for the fabrication of flexible crystalline-Si (c-Si) solar cells that employ ~1/100th) ...
Si-nanowires are being introduced as an attempt to decrease the high recombination rate present in s...
The favorable bandgap and natural abundance of Si, combined with the large expertise base for semico...
In an effort to develop low-cost solar energy conversion techniques, high uniformity vertically orie...
Silicon wire arrays, though attractive materials for use in photovoltaics and as photocathodes for h...
© 2016 Elsevier Inc. Photovoltaic (PV) devices based on arrays of silicon wires with diameters in th...
The effective electron minority-carrier diffusion length, L_(n,eff), for 2.0 µm diameter Si wires th...