Solar cells based on arrays of CVD-grown Si nano- or micro-wires have attracted interest as potentially low-cost alternatives to conventional wafer-based Si photovoltaics [1-6], and single-wire solar cells have been reported with efficiencies of up to 3.4% [7]. We recently presented device physics simulations which predicted efficiencies exceeding 17%, based on experimentally observed diffusion lengths within our wires [8]. However, this model did not take into account the optical properties of a wire array device - in particular the inherently low packing fraction of wires within CVD-grown wire arrays, which might limit their ability to fully absorb incident sunlight. For this reason, we have combined a device physics model of Si wire sola...
Si microwire-array solar cells with Air Mass 1.5 Global conversion efficiencies of up to 7.9% have b...
Single semiconducting nanowires with sub wavelength diameters exhibit superior light absorp tion, an...
Single semiconducting nanowires with sub wavelength diameters exhibit superior light absorp tion, an...
Solar cells based on arrays of CVD-grown Si nano- or micro-wires have attracted interest as potentia...
Solar cells based on arrays of CVD-grown Si nano- or micro-wires are being considered as a potential...
Solar cells based on arrays of CVD-grown Si nano- or micro-wires are being considered as a potential...
Si wire arrays have recently demonstrated their potential as photovoltaic devices [1-3]. Using thes...
Si wire arrays have recently demonstrated their potential as photovoltaic devices [1-3]. Using thes...
Si wire arrays are a promising architecture for solar-energy-harvesting applications, and may offer ...
Single semiconducting nanowires with sub-wavelength diameters exhibit superior light absorption, and...
Thin film nanostructured photovoltaic cells are increasing in efficiency and decreasing the cost of ...
Crystalline Si wires, grown by the vapor–liquid–solid (VLS) process, have emerged as promising cand...
Single semiconducting nanowires with sub-wavelength diameters exhibit superior light absorption, and...
Si microwire-array solar cells with Air Mass 1.5 Global conversion efficiencies of up to 7.9% have b...
Single semiconducting nanowires with sub wavelength diameters exhibit superior light absorp tion, an...
Si microwire-array solar cells with Air Mass 1.5 Global conversion efficiencies of up to 7.9% have b...
Single semiconducting nanowires with sub wavelength diameters exhibit superior light absorp tion, an...
Single semiconducting nanowires with sub wavelength diameters exhibit superior light absorp tion, an...
Solar cells based on arrays of CVD-grown Si nano- or micro-wires have attracted interest as potentia...
Solar cells based on arrays of CVD-grown Si nano- or micro-wires are being considered as a potential...
Solar cells based on arrays of CVD-grown Si nano- or micro-wires are being considered as a potential...
Si wire arrays have recently demonstrated their potential as photovoltaic devices [1-3]. Using thes...
Si wire arrays have recently demonstrated their potential as photovoltaic devices [1-3]. Using thes...
Si wire arrays are a promising architecture for solar-energy-harvesting applications, and may offer ...
Single semiconducting nanowires with sub-wavelength diameters exhibit superior light absorption, and...
Thin film nanostructured photovoltaic cells are increasing in efficiency and decreasing the cost of ...
Crystalline Si wires, grown by the vapor–liquid–solid (VLS) process, have emerged as promising cand...
Single semiconducting nanowires with sub-wavelength diameters exhibit superior light absorption, and...
Si microwire-array solar cells with Air Mass 1.5 Global conversion efficiencies of up to 7.9% have b...
Single semiconducting nanowires with sub wavelength diameters exhibit superior light absorp tion, an...
Si microwire-array solar cells with Air Mass 1.5 Global conversion efficiencies of up to 7.9% have b...
Single semiconducting nanowires with sub wavelength diameters exhibit superior light absorp tion, an...
Single semiconducting nanowires with sub wavelength diameters exhibit superior light absorp tion, an...