Perovskite solar cells have recently seen rapid improvements in performance with certified efficiencies of above 23%. Fullerene compounds are a very popular electron-transfer material in these devices. In a previous report, it has been shown that while an ultrathin fullerene layer of just 1 nm is sufficient to achieve good device performance, removal of this layer causes a drastic decrease in performance. We provide an explanation to these observed effects by use of a numerical device model. This work provides theoretical support to the experimental understanding of the dominant role of fullerenes in perovskite solar cells
The fullerene C60 is commonly applied as the electron transport layer in highefficiency metal halid...
In this article, the stability of inverted (p-i-n) perovskite solar cells is studied under accelerat...
The active layers of perovskite solar cells are also structural layers and are central to ensuring t...
High performance, hysteresis-free, low temperature n-i-p perovskite solar cells are successfully fab...
Perovskite solar cells are promising candidates for next-generation photovoltaics. Fullerenes and th...
In this work, we identify the importance of C60 and compact-TiO2 (cTiO2) as electron transport layer...
We report here the effect of fullerene (C-60) incorporation on the growth of CH(3)NH(3)PbI(3)perovsk...
Fullerenes have attracted considerable interest as an electron-transporting layer in perovskite sola...
In this work, we investigate how electron extraction layers (EELs) with different dielectric constan...
Inverted planar structure perovskite solar cells (PSCs), due to their low-temperature precessing and...
This thesis is concerned with the photo-dimerisation mechanism of C60 in bulk hetero-junction (BHJ) ...
Interfaces between the photoactive and charge transport layers are crucial for the performance of pe...
Abstract Suitable electron transport materials bearing good interfacial contact, improved electron t...
Perovskite semiconductors are an attractive option to overcome the limitations of established silico...
Perovskite materials gain a huge interest in the photovoltaic (PV) community due to its unique chara...
The fullerene C60 is commonly applied as the electron transport layer in highefficiency metal halid...
In this article, the stability of inverted (p-i-n) perovskite solar cells is studied under accelerat...
The active layers of perovskite solar cells are also structural layers and are central to ensuring t...
High performance, hysteresis-free, low temperature n-i-p perovskite solar cells are successfully fab...
Perovskite solar cells are promising candidates for next-generation photovoltaics. Fullerenes and th...
In this work, we identify the importance of C60 and compact-TiO2 (cTiO2) as electron transport layer...
We report here the effect of fullerene (C-60) incorporation on the growth of CH(3)NH(3)PbI(3)perovsk...
Fullerenes have attracted considerable interest as an electron-transporting layer in perovskite sola...
In this work, we investigate how electron extraction layers (EELs) with different dielectric constan...
Inverted planar structure perovskite solar cells (PSCs), due to their low-temperature precessing and...
This thesis is concerned with the photo-dimerisation mechanism of C60 in bulk hetero-junction (BHJ) ...
Interfaces between the photoactive and charge transport layers are crucial for the performance of pe...
Abstract Suitable electron transport materials bearing good interfacial contact, improved electron t...
Perovskite semiconductors are an attractive option to overcome the limitations of established silico...
Perovskite materials gain a huge interest in the photovoltaic (PV) community due to its unique chara...
The fullerene C60 is commonly applied as the electron transport layer in highefficiency metal halid...
In this article, the stability of inverted (p-i-n) perovskite solar cells is studied under accelerat...
The active layers of perovskite solar cells are also structural layers and are central to ensuring t...