The factors limiting the performance of alternative polycrystalline solar cells as compared with their single-crystal counterparts are not fully understood, but are thought to originate from structural and chemical heterogeneities at various length scales. Here, it is demonstrated that multimodal focused nanobeam X-ray microscopy can be used to reveal multiple aspects of the problem in a single measurement by mapping chemical makeup, lattice structure and charge collection efficiency simultaneously in a working solar cell. This approach was applied to micrometre-sized individual grains in a Cu(In,Ga)Se$_2$ polycrystalline film packaged in a working device. It was found that, near grain boundaries, collection efficiency is increased, and tha...
We report a multi-modal study of the electrical, chemical and structural properties of a kesterite t...
We report a multi-modal study of the electrical, chemical and structural properties of a kesterite t...
The performance of centimeter-sized energy devices is regulated by inhomogeneously distributed nanos...
Inhomogeneities and defects often limit the overall performance of thin-film solar cells. Therefore,...
Thin-film photovoltaic devices are used to harvest solar energy. To be economically competitive, thr...
Abstract—To boost the efficiency of thin-film polycrystalline so-lar cells that are microscopically ...
The efficiency of thin-film solar cells with a CuIn1-xGaxSe2 absorber is limited by nanoscopic inhom...
The local collection characteristics of grain interiors and grain boundaries in thin-film CdTe polyc...
A new method for efficiently converting electron backscatter diffraction data obtained using serial ...
Photoluminescence and photocurrent spectroscopies combined with diffraction-limited and sub- diffrac...
Cost efficiency and defect passivation are the two major challenges that thin-film solar cells have ...
International audiencePhotovoltaic (PV) cell performance is dictated by the material of the cell, it...
Microstructural analysis of high efficiency thin film CdTe solar cells has been obtained over large ...
solar cells with nanoscale resolution Elizabeth Tennyson and Marina Leite A novel spectroscopic imag...
It is widely accepted that micro- and nanoscale inhomogeneities govern the performance of many thin-...
We report a multi-modal study of the electrical, chemical and structural properties of a kesterite t...
We report a multi-modal study of the electrical, chemical and structural properties of a kesterite t...
The performance of centimeter-sized energy devices is regulated by inhomogeneously distributed nanos...
Inhomogeneities and defects often limit the overall performance of thin-film solar cells. Therefore,...
Thin-film photovoltaic devices are used to harvest solar energy. To be economically competitive, thr...
Abstract—To boost the efficiency of thin-film polycrystalline so-lar cells that are microscopically ...
The efficiency of thin-film solar cells with a CuIn1-xGaxSe2 absorber is limited by nanoscopic inhom...
The local collection characteristics of grain interiors and grain boundaries in thin-film CdTe polyc...
A new method for efficiently converting electron backscatter diffraction data obtained using serial ...
Photoluminescence and photocurrent spectroscopies combined with diffraction-limited and sub- diffrac...
Cost efficiency and defect passivation are the two major challenges that thin-film solar cells have ...
International audiencePhotovoltaic (PV) cell performance is dictated by the material of the cell, it...
Microstructural analysis of high efficiency thin film CdTe solar cells has been obtained over large ...
solar cells with nanoscale resolution Elizabeth Tennyson and Marina Leite A novel spectroscopic imag...
It is widely accepted that micro- and nanoscale inhomogeneities govern the performance of many thin-...
We report a multi-modal study of the electrical, chemical and structural properties of a kesterite t...
We report a multi-modal study of the electrical, chemical and structural properties of a kesterite t...
The performance of centimeter-sized energy devices is regulated by inhomogeneously distributed nanos...