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An Approach to Equivalent Circuit Modelling of Inverted Organic Solar Cells
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作者 Nazmul Hossain Sayantan Das Terry L. Alford 《Circuits and Systems》 2016年第8期1297-1306,共10页
A low temperature sol-gel process was used to fabricate zinc-oxide and yttrium-doped zinc oxide layers. These zinc-oxide and yttrium-doped ZnO films were used as electron transport layers in conjunction with P<sub&... A low temperature sol-gel process was used to fabricate zinc-oxide and yttrium-doped zinc oxide layers. These zinc-oxide and yttrium-doped ZnO films were used as electron transport layers in conjunction with P<sub>3</sub>HT and PC<sub>16</sub>BM type solar cells. It was demonstrated that annealing and doping of electron transport layer influenced the overall organic solar cells performance. Anneals of ~ 150?C provided the highest device performance. Compared to the undoped zinc oxide, the device with yttrium doped zinc oxide layers showed improved efficiency by about 30%. Furthermore an equivalent circuit was proposed to understand the connection between the electrical and optical characteristics of the device. Comparisons between the simulated and experimental current-voltage(I-V) curves displayed only a 1.2% variation between the curves. Clearly, our experimental and simulated studies provide new insight on the equivalent circuit models for inverted organic solar cells and further improvement on photovoltaic efficiency. 展开更多
关键词 Inverted Organic Solar Cell Equivalent Circuit Fill-Factor P3HT/PCBM ETL Yttrium-Doped ZnO
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Nonlinear Flexural Behavior and Moment Curvature Response of Epoxy Resin Using Digital Image Correlation Technique
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作者 Masoud Yekani Fard Yingtao Liu Yingtao Liu and Aditi Chattopadhyay 《材料科学与工程(中英文版)》 2011年第2期212-219,共8页
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Damage smoothing effects in a delocalized rate sensitivity model for metals
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作者 K.Enakoutsa K.N.Solanki +2 位作者 F.R.Ahad Y.Tjiptowidjojo D.J.Bammann 《Theoretical & Applied Mechanics Letters》 CAS 2012年第5期18-22,共5页
It has been long time established that application of damage delocalization method to softening constitutive models yields numerical results that are independent of the size of the finite element. However, the predict... It has been long time established that application of damage delocalization method to softening constitutive models yields numerical results that are independent of the size of the finite element. However, the prediction of real-world large and small scale problems using the delocalization method remains in its infancy. One of the drawbacks encountered is that the predicted load versus displacement curve suddenly drops, as a result of excessive smoothing of the damage. The present paper studies this unwanted effect for a delocalized plasticity/damage model for metallic materials. We use some theoretical arguments to explain the failure of the delocalized model considered, following which a simple remedy is proposed to deal with it. Future works involve the numerical implementation of the new version reproduce real-world problems. 展开更多
关键词 Bammann-Chiesa-Johnson model damage smoothing Fourier transform SOFTENING
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Equivalent Circuit Modification for Organic Solar Cells
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作者 Nazmul Hossain Sayantan Das Terry L. Alford 《Circuits and Systems》 2015年第6期153-160,共8页
In this work, a newly fabricated organic solar cell based on a composite of fullerene derivative [6,6]-phenyl-C61 butyric acid methyl ester (PCBM) and regioregular poly (3-hexylthiophene) (P3HT) with an added interfac... In this work, a newly fabricated organic solar cell based on a composite of fullerene derivative [6,6]-phenyl-C61 butyric acid methyl ester (PCBM) and regioregular poly (3-hexylthiophene) (P3HT) with an added interfacial layer of AgOx in between the PEDOT:PSS layer and the ITO layer is investigated and an equivalent circuit model is proposed for the device. Incorporation of the AgOx interfacial layer shows an increase in fill factor (by 33%) and power conversion efficiency (by 28%). Moreover, proper correlation has been achieved between the experimental and simulated I-V plots. The simulation shows that device characteristics can be explained with accuracy by the proposed model. 展开更多
关键词 EQUIVALENT CIRCUIT Fill-Factor INTERFACIAL Layer ORGANIC Solar Cells P3HT/PCBM
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