Using soft-imprint nanolithography, we demonstrate large-area application of engineered two-dimensional polarization-independent networks of silver nanowires as transparent conducting electrodes. These networks have high optical transmittance, low electrical sheet resistance, and at the same time function as a photonic light-trapping structure enhancing optical absorption in the absorber layer of thin-film solar cells. We study the influence of nanowire width and pitch on the network transmittance and sheet resistance, and demonstrate improved performance compared to ITO. Next, we use P3HT-PCBM organic solar cells as a model system to show the realization of nanowire network based functional devices. Using angle-resolved external quantum ef...
Transparent electrodes (TE) constitute a key component of optoelectronic devices such as solar cells...
A laterally oriented GaAs p-i-n nanowire solar cell with Ag gratings is proposed and studied via cou...
DoctorThis thesis explores ways to design of nanostructured optical layers for efficient light trapp...
Using soft-imprint nanolithography, we demonstrate large-area application of engineered two-dimensio...
Research is increasingly being dedicated towards replacing rare earth elements in Transparent Cond...
Metal nanowire networks are emerging as next generation transparent electrodes for photovoltaic devi...
This work focuses on the development of metal nanowire networks for the use as transparent electrode...
Metallic and dielectric nanostructures have highly tunable resonances that have been used to increas...
Transparent conducting electrodes (TCEs) with multi-length scaled structure are promising candidates...
Recently, metal nanowires have received great research interests due to their potential as next-gene...
We demonstrate the application of metal nanowire (NW) networks as a transparent electrode on hydroge...
The past few years have seen a considerable amount of research devoted to nanostructured transparent...
Losses caused by the metal top contacts still remain as an issue in crystalline silicon (Si) solar c...
The surface area of a building that could potentially be used for Building Integrated Photovoltaics ...
This thesis provides new solutions for integrable PV by exploiting nanophotonic principles in nanosc...
Transparent electrodes (TE) constitute a key component of optoelectronic devices such as solar cells...
A laterally oriented GaAs p-i-n nanowire solar cell with Ag gratings is proposed and studied via cou...
DoctorThis thesis explores ways to design of nanostructured optical layers for efficient light trapp...
Using soft-imprint nanolithography, we demonstrate large-area application of engineered two-dimensio...
Research is increasingly being dedicated towards replacing rare earth elements in Transparent Cond...
Metal nanowire networks are emerging as next generation transparent electrodes for photovoltaic devi...
This work focuses on the development of metal nanowire networks for the use as transparent electrode...
Metallic and dielectric nanostructures have highly tunable resonances that have been used to increas...
Transparent conducting electrodes (TCEs) with multi-length scaled structure are promising candidates...
Recently, metal nanowires have received great research interests due to their potential as next-gene...
We demonstrate the application of metal nanowire (NW) networks as a transparent electrode on hydroge...
The past few years have seen a considerable amount of research devoted to nanostructured transparent...
Losses caused by the metal top contacts still remain as an issue in crystalline silicon (Si) solar c...
The surface area of a building that could potentially be used for Building Integrated Photovoltaics ...
This thesis provides new solutions for integrable PV by exploiting nanophotonic principles in nanosc...
Transparent electrodes (TE) constitute a key component of optoelectronic devices such as solar cells...
A laterally oriented GaAs p-i-n nanowire solar cell with Ag gratings is proposed and studied via cou...
DoctorThis thesis explores ways to design of nanostructured optical layers for efficient light trapp...