Colloidal quantum dot solar cell power conversion efficiency optimization using analysis of current-voltage characteristics and electrode contact imaging by lock-in carrierography

2017 ◽  
Vol 25 (12) ◽  
pp. 1034-1050 ◽  
Author(s):  
Lilei Hu ◽  
Mengxia Liu ◽  
Andreas Mandelis ◽  
Alexander Melnikov ◽  
Edward H. Sargent
2015 ◽  
Vol 39 (6) ◽  
pp. 4805-4813 ◽  
Author(s):  
Hee-Je Kim ◽  
Hyun-Dong Lee ◽  
Challa Shesha Sai Pavan Kumar ◽  
Sunkara Srinivasa Rao ◽  
Sang-Hwa Chung ◽  
...  

The PbS/Mn-CdS electrode shows superior stability in a sulfide/polysulfide electrolyte with a power conversion efficiency (η) of 3.55%.


2014 ◽  
Vol 2 (46) ◽  
pp. 19653-19659 ◽  
Author(s):  
Jianjun Tian ◽  
Lili Lv ◽  
Chengbin Fei ◽  
Yajie Wang ◽  
Xiaoguang Liu ◽  
...  

The power conversion efficiency of CdS/CdSe sensitized solar cells is increased to 6.33% by doping Mn2+ into the CdSe quantum dot.


2012 ◽  
Vol 2012 ◽  
pp. 1-5
Author(s):  
Natasha A. D. Yamamoto ◽  
Andreia G. Macedo ◽  
Lucimara S. Roman

Copolymers based on fluorene-thiophene units have presented promising efficiencies in photovoltaic devices applications. They present good transport properties mainly after thermal treatment of the polymer films. Here, we investigate the properties of bilayer devices formed by the heterojunction of the polymer F8T2 with variable thickness and the fullerene. The series resistance of the equivalent circuit associated with the device increases as the polymer film gets thicker. The current-voltage characteristics of the bilayer devices follow the Mott-Gurney law of SCLC. For the best performing device we measured 2.1% of power conversion efficiency.


Energies ◽  
2021 ◽  
Vol 14 (13) ◽  
pp. 3868
Author(s):  
M. Zahangir Kabir

A physics-based compact analytical model for studying the current–voltage characteristics of perovskite solar cells has been proposed by considering the external voltage-dependent carrier transport, exponential photon absorption, and bulk charge carrier recombination. The explicit analytical expressions for both the forward dark and photocurrents in perovskite solar cells are derived. The current in the external circuit is calculated considering the actual solar spectrum. The mathematical models are verified and useful physical parameters are extracted by comparing the model calculations with the published experimental results on various perovskite solar cells. The proposed model shows excellent agreement with the experimental results. The power conversion efficiency can be improved further by enhancing the carrier transport in the perovskite layer. The improvement in charge carrier transport enhances the fill factor and hence the power conversion efficiency.


2020 ◽  
Vol 15 (1) ◽  
Author(s):  
Pei Xu ◽  
Xiaopeng Chang ◽  
Runru Liu ◽  
Liying Wang ◽  
Xuesong Li ◽  
...  

Abstract Despite great efforts dedicated to enhance power conversion efficiency (PCE) of quantum dot-sensitized solar cells (QDSSCs) in the past two decades, the efficiency of QDSSCs is still far behind its theoretical value. The present approaches for improving PCE are mainly focused on tailoring the bandgap of QDs to broadening light-harvesting and optimizing interfaces of component parts. Herein, a new solar cell architecture is proposed by integrating concentrating solar cell (CPV) concept into QDSSCs with double photoanode design. The Cu2S mesh is used as a counter electrode and sandwiched between two photoanodes. This designed battery structure can increase the PCE by 260% compared with a single photoanode. With the most extensively used CdS/CdSe QD sensitizers, a champion PCE of 8.28% (Voc = 0.629 V, Jsc = 32.247 mA cm−2) was achieved. This is mainly due to the increase in Jsc due to the double photoanode design and adoption of the CPV concept. In addition, another reason is that concentrated sunshine illumination induced a photothermal effect, accelerating the preceding chemical reactions associated with the conversion of polysulfide species. The cell fabrication and design reported here provides a new insight for further development of QDSSCs.


2019 ◽  
Vol 7 (45) ◽  
pp. 26020-26028 ◽  
Author(s):  
Afsal Manekkathodi ◽  
Bin Chen ◽  
Junghwan Kim ◽  
Se-Woong Baek ◽  
Benjamin Scheffel ◽  
...  

Multi-junction solar cells based on solution-processed metal halide perovskites offer a route to increased power conversion efficiency (PCE); however, the limited options for infrared (IR)-absorbing back cells have constrained progress.


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