We present a modelling study of thin silicon based solar cells endowed with periodic and decoupled front/back textures. After careful optimization, the proposed device models exhibit absorption beyond the Lambertian light trapping limit for a wide range of light angles of incidence. The advanced light management scheme is applied to (nano)crystalline silicon solar cells, where the benefits of texturing the absorber rather than the supporting layers is clear and to barium (di)silicide solar cells, which could achieve an implied photocurrent densityof41.1 mA/cm2 for a thickness of only 2 \mum.Green Open Access added to TU Delft Institutional Repository ‘You share, we take care!’ – Taverne project https://www.openaccess.nl/en/you-share-we-take...
Efficient solar cells require both strong absorption and effective collection of photogenerated carr...
This dissertation presents numerical and experimental studies of a unified light trapping approach t...
Solar energy can fulfil mankind’s energy needs and secure a more balanced distribution of primary so...
We numerically investigate the light-absorption behavior of thin-film silicon for normal-incident li...
We theoretically investigate the light-trapping properties of one- and two-dimensional periodic patt...
We theoretically investigate the light-trapping properties of one- and two-dimensional periodic patt...
The coming years will see humanity facing significant challenges to ensure its continued survival. T...
Summary: Recent trends in photovoltaics demand ever-thin solar cells to allow deployment in consumer...
Incomplete light absorption makes effective light-trapping (LT) crucial for realising higher short-c...
Efficient photovoltaic conversion of solar energy requires optimization of both light absorption and...
We present advanced light trapping concepts for thin film silicon solar cells. When an amorphous and...
Efficient photovoltaic conversion of solar energy requires optimization of both light absorption and...
The low conversion efficiency of thin-film silicon solar cells currently prevents them from competin...
Haase C, Stiebig H. Thin-film silicon solar cells with efficient periodic light trapping texture. Ap...
ABSTRACT: We theoretically investigate light trapping in thin film crystalline silicon solar cells w...
Efficient solar cells require both strong absorption and effective collection of photogenerated carr...
This dissertation presents numerical and experimental studies of a unified light trapping approach t...
Solar energy can fulfil mankind’s energy needs and secure a more balanced distribution of primary so...
We numerically investigate the light-absorption behavior of thin-film silicon for normal-incident li...
We theoretically investigate the light-trapping properties of one- and two-dimensional periodic patt...
We theoretically investigate the light-trapping properties of one- and two-dimensional periodic patt...
The coming years will see humanity facing significant challenges to ensure its continued survival. T...
Summary: Recent trends in photovoltaics demand ever-thin solar cells to allow deployment in consumer...
Incomplete light absorption makes effective light-trapping (LT) crucial for realising higher short-c...
Efficient photovoltaic conversion of solar energy requires optimization of both light absorption and...
We present advanced light trapping concepts for thin film silicon solar cells. When an amorphous and...
Efficient photovoltaic conversion of solar energy requires optimization of both light absorption and...
The low conversion efficiency of thin-film silicon solar cells currently prevents them from competin...
Haase C, Stiebig H. Thin-film silicon solar cells with efficient periodic light trapping texture. Ap...
ABSTRACT: We theoretically investigate light trapping in thin film crystalline silicon solar cells w...
Efficient solar cells require both strong absorption and effective collection of photogenerated carr...
This dissertation presents numerical and experimental studies of a unified light trapping approach t...
Solar energy can fulfil mankind’s energy needs and secure a more balanced distribution of primary so...