Efficient light absorption in thin-film photovoltaic (PV) devices is crucial for improving their efficiency and reducing cost. Here we have not only developed a low-cost and scalable method to fabricate a unique type of integrated-nanopillar-nanowell (i-NPW) structure by integrating nanopillar and nanowell arrays together vertically, but also demonstrated the attractive optical property of the i-NPW arrays by leveraging the advantages of “positive” and “negative” nanostructures for photon harvesting. Impressively, the 2 μm thick i-NPW arrays with only 40 nm a-Si coating obtained a day-integrated absorption of 89.27%, as opposed to only 33.45% for the planar control sample. These results suggest the feasibility and clear advantage of vertica...
Three-dimensional (3-D) nanostructures have been widely explored for efficient light trapping; howev...
III-V optoelectronic device integration in a CMOS post-process compatible manner is important for th...
Photovoltaics (PV) technology is currently enjoying substantial growth and investment, owing to worl...
Efficient light absorption in thin-film photovoltaic (PV) devices is crucial for improving their eff...
fficient light absorption is crucial for enhancing the performance of thin-film photovoltaic (PV) de...
Ordered three dimensional (3-D) nanophotonic structures have been extensively explored in recent pho...
Solar energy represents one of the most abundant and yet least harvested sources of renewable energy...
Solar energy represents one of the most abundant and yet least harvested sources of renewable energy...
Materials and device architecture innovations are essential for further enhancing the performance of...
Nanopillar photovoltaics present significant potential for fabrication of high-efficiency, low-cost ...
The sun delivers an amount of energy equivalent to ninety billion hydrogen bombs detonating each sec...
Due to the unique optical properties, three-dimensional arrays of silicon nanostructures have attrac...
Decoupling paths of carrier collection and illumination within photovoltaic devices is one promising...
This thesis provides new solutions for integrable PV by exploiting nanophotonic principles in nanosc...
Decoupling paths of carrier collection and illumination within photovoltaic devices is one promising...
Three-dimensional (3-D) nanostructures have been widely explored for efficient light trapping; howev...
III-V optoelectronic device integration in a CMOS post-process compatible manner is important for th...
Photovoltaics (PV) technology is currently enjoying substantial growth and investment, owing to worl...
Efficient light absorption in thin-film photovoltaic (PV) devices is crucial for improving their eff...
fficient light absorption is crucial for enhancing the performance of thin-film photovoltaic (PV) de...
Ordered three dimensional (3-D) nanophotonic structures have been extensively explored in recent pho...
Solar energy represents one of the most abundant and yet least harvested sources of renewable energy...
Solar energy represents one of the most abundant and yet least harvested sources of renewable energy...
Materials and device architecture innovations are essential for further enhancing the performance of...
Nanopillar photovoltaics present significant potential for fabrication of high-efficiency, low-cost ...
The sun delivers an amount of energy equivalent to ninety billion hydrogen bombs detonating each sec...
Due to the unique optical properties, three-dimensional arrays of silicon nanostructures have attrac...
Decoupling paths of carrier collection and illumination within photovoltaic devices is one promising...
This thesis provides new solutions for integrable PV by exploiting nanophotonic principles in nanosc...
Decoupling paths of carrier collection and illumination within photovoltaic devices is one promising...
Three-dimensional (3-D) nanostructures have been widely explored for efficient light trapping; howev...
III-V optoelectronic device integration in a CMOS post-process compatible manner is important for th...
Photovoltaics (PV) technology is currently enjoying substantial growth and investment, owing to worl...