Exact(2)
The superior conversion efficiency achieved by mixture dyes is attributed to the broader light harvesting.
Compared to those Pt CEs and directly immersing Cu2S CEs, CuS/brass CEs present superior conversion efficiency and stability.
Similar(58)
Compared to the Spiro-OMeTAD-based device, the copolymer with methoxy side-chains on the BT unit (namely PCDTBT1) as the HTM achieved superior power conversion efficiency and stability due to efficient hole transport and the suppression of trap-induced degradation, whilst the copolymer with octyloxy side-chains on the BT unit (namely PCDTBT8) as the HTM lead to poor performance and stability.
The device based on the HC-CE showed superior power conversion efficiency (6.3%) and long-term stability over the device based on the C-CE (5.8%).
When a CuPc hole transport layer is further introduced, carbon counter electrode based perovskite solar cells exhibit a superior power conversion efficiency of 16.61%.
As a result, a superior power conversion efficiency (PCE) of 15.5% was obtained for the device based on the ammonia-doped PEDOT PSS HTL than that of the pristine PEDOT PSS-based PEDOT PSS-based
The incorporation of ZnO/CdS/Py-OH NAs as ETL into the inverted PSCs based on P3HT PC61BM resulted in a superior power conversion efficiency (PCE) of 4.2% with enhanced short circuit current (Jsc) and fill factor (FF), compared to 3.1% for bare ZnO NAs, due to the intermolecular close-stacking and relative stronger π π interaction energy between Py-OH and fullerenes.
This nano-sulfide/carbon composite electrode was introduced into CdS/CdSe QDSC for the first time and superior energy conversion efficiency of 3.08% was achieved.
Plasmonic gold nanostars (GNS) have an extremely large two-photon luminescence cross-section that allows real-time imaging through multiphoton microscopy, as well as superior photothermal conversion efficiency with highly concentrated heating due to its tip-enhanced plasmonic effect.
Although the solar cells based on CdS nanocrystals usually do not demonstrate superior power conversion efficiency (PCE) (Table 1), this material is convenient to study as a proof of concept for new cell geometries and to model hybrid interface properties [4, 14 16] due to the abovementioned advantages.
It exhibited superior power conversion efficiencies with respect to conventional nanoparticle-based reference film.
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