Suppression of Photovoltaic Losses in Efficient Tandem Organic Solar Cells (15.2%) with Efficient Transporting Layers and Light Management Approach

2020 ◽  
Vol 9 (1) ◽  
pp. 2000751
Author(s):  
Mohammad Mahdi Tavakoli ◽  
Huayan Si ◽  
Jing Kong
2012 ◽  
Vol 2012 ◽  
pp. 1-7 ◽  
Author(s):  
K. Tsuboi ◽  
T. Fukawa ◽  
Y. Konosu ◽  
H. Matsumoto ◽  
A. Tanioka

We report a novel light management approach based on solution-processed nanowire (NW) coating for enhancing organic solar cell efficiency. A titanium dioxide (TiO2) NW dispersion was produced by electrospinning. The coatings with various coverage fractions were fabricated by a simple solution casting of a TiO2NW dispersion. Reduced reflectivity was observed for the NW-coated glass slide. The bulk-heterojunction organic solar cells with the NW coating showed improved power conversion efficiencies (PCEs) due to their antireflection and light trapping effects in the active layer. In addition, the PCE of the cell with the NW coating was improved compared with that without the NW coating for incident angles above 70° (increased by a maximum of 51.6% at an incident angle of 85°). These results indicate that solution-processed NW coating is a promising light management approach easily scalable and applicable to a wide range of devices, including solar cells.


2021 ◽  
Vol 8 (3) ◽  
Author(s):  
Kulrisa Kuntamung ◽  
Patrawadee Yaiwong ◽  
Chutiparn Lertvachirapaiboon ◽  
Ryousuke Ishikawa ◽  
Kazunari Shinbo ◽  
...  

We studied the effect of gold quantum dots (AuQDs)/grating-coupled surface plasmon resonance (GC-SPR) in inverted organic solar cells (OSCs). AuQDs are located within a GC-SPR evanescent field in inverted OSCs, indicating an interaction between GC-SPR and AuQDs' quantum effects, subsequently giving rise to improvement in the performance of inverted OSCs. The fabricated solar cell device comprises an ITO/TiO 2 /P3HT : PCBM/PEDOT : PSS : AuQD/silver grating structure. The AuQDs were loaded into a hole transport layer (PEDOT : PSS) of the inverted OSCs to increase absorption in the near-ultraviolet (UV) light region and to emit visible light into the neighbouring photoactive layer, thereby achieving light-harvesting improvement of the device. The grating structures were fabricated on P3HT:PCBM layers using a nanoimprinting technique to induce GC-SPR within the inverted OSCs. The AuQDs incorporated within the strongly enhanced GC-SPR evanescent electric field on metallic nanostructures in the inverted OSCs improved the short-circuit current and the efficiency of photovoltaic devices. In comparison with the reference OSC and OSCs with only green AuQDs or only metallic grating, the developed device indicates enhancement of up to 16% power conversion efficiency. This indicates that our light management approach allows for greater light utilization of the OSCs because of the synergistic effect of G-AuQDs and GC-SPR.


Author(s):  
Seunghyup Yoo ◽  
Donggeon Han ◽  
Hoyeon Kim ◽  
Changsoon Cho ◽  
Jung-Yong Lee

2017 ◽  
Vol 25 (4) ◽  
pp. A176 ◽  
Author(s):  
Benjamin Lipovšek ◽  
Andrej Čampa ◽  
Fei Guo ◽  
Christoph J. Brabec ◽  
Karen Forberich ◽  
...  

Author(s):  
Marina Mariano ◽  
Paola Mantilla-Pérez ◽  
Pablo Romero-Gómez ◽  
Alberto Martínez-Otero ◽  
Xavier Elias ◽  
...  

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