The performance of multijunction devices lags behind single-junction organic photovoltaics (OPVs) mainly because of the lack of suitable subcells. Here, we attempt to address this bottleneck and demonstrate efficient nonfullerene-based multijunction OPVs while at the same time highlighting the remaining challenges. We first demonstrate double-junction OPVs with power conversion efficiency (PCE) of 16.5%. Going a step further, we developed triple-junction OPVs with a PCE of 14.9%, the highest value reported to date for this triple-junction cells. Device simulations suggest that improving the front-cell's carrier mobility to >5 × 10-4 cm2 V-1 s-1 is needed to boost the efficiency of double- and triple-junction OPVs. Analysis of the efficiency...
An organic double heterojunction photovoltaic device is described and the limits of its power conver...
The reported power conversion efficiencies (PCEs) of nonfullerene acceptor (NFA) based organic photo...
[EN] Single junction Si solar cells dominate photovoltaics but are close to their efficiency limits....
The performance of multijunction devices lags behind single-junction organic photovoltaics (OPVs) ma...
In order for organic bulk heterojunction solar cells to compete with the traditional inorganic cells...
The reported power conversion efficiencies (PCEs) of nonfullerene acceptor (NFA) based organic photo...
Organic photovoltaic cells (OPVs) have attracted broad attention and become a very energetic field a...
The emerging field of stacked layers (double- and even multi-layers) in organic photovoltaic cells i...
The emerging field of stacked layers (double- and even multi-layers) in organic photovoltaic cells i...
\u3cp\u3eThe efficiency of organic solar cells can benefit from multijunction device architectures, ...
A tandem structure was invented to enhance photon utilization efficiency and reduce thermal loss. Co...
The multi-junction concept is especially attractive for the photovoltaic (PV) research community owi...
This chapter discusses solar cells made of III–V semiconductors, and how they have reached efficienc...
LGEP 2014 ID = 1656International audienceSingle junction Si solar cells dominate photovoltaics but a...
An organic double heterojunction photovoltaic device is described and the limits of its power conver...
The reported power conversion efficiencies (PCEs) of nonfullerene acceptor (NFA) based organic photo...
[EN] Single junction Si solar cells dominate photovoltaics but are close to their efficiency limits....
The performance of multijunction devices lags behind single-junction organic photovoltaics (OPVs) ma...
In order for organic bulk heterojunction solar cells to compete with the traditional inorganic cells...
The reported power conversion efficiencies (PCEs) of nonfullerene acceptor (NFA) based organic photo...
Organic photovoltaic cells (OPVs) have attracted broad attention and become a very energetic field a...
The emerging field of stacked layers (double- and even multi-layers) in organic photovoltaic cells i...
The emerging field of stacked layers (double- and even multi-layers) in organic photovoltaic cells i...
\u3cp\u3eThe efficiency of organic solar cells can benefit from multijunction device architectures, ...
A tandem structure was invented to enhance photon utilization efficiency and reduce thermal loss. Co...
The multi-junction concept is especially attractive for the photovoltaic (PV) research community owi...
This chapter discusses solar cells made of III–V semiconductors, and how they have reached efficienc...
LGEP 2014 ID = 1656International audienceSingle junction Si solar cells dominate photovoltaics but a...
An organic double heterojunction photovoltaic device is described and the limits of its power conver...
The reported power conversion efficiencies (PCEs) of nonfullerene acceptor (NFA) based organic photo...
[EN] Single junction Si solar cells dominate photovoltaics but are close to their efficiency limits....