نتایج جستجو برای: tandem solar cell

تعداد نتایج: 1830611  

2016
Jianyu Yuan Jinan Gu Guozheng Shi Jianxia Sun Hai-Qiao Wang Wanli Ma

In this work, we have reported for the first time an efficient all-polymer tandem cell using identical sub-cells based on P2F-DO:N2200. A high power conversion efficiency (PCE) of 6.70% was achieved, which is among the highest efficiencies for all polymer solar cells and 43% larger than the PCE of single junction cell. The largely improved device performance can be mainly attributed to the enha...

2015
Shaoqiang Chen Lin Zhu Masahiro Yoshita Toshimitsu Mochizuki Changsu Kim Hidefumi Akiyama Mitsuru Imaizumi Yoshihiko Kanemitsu

World-wide studies on multi-junction (tandem) solar cells have led to record-breaking improvements in conversion efficiencies year after year. To obtain detailed and proper feedback for solar-cell design and fabrication, it is necessary to establish standard methods for diagnosing subcells in fabricated tandem devices. Here, we propose a potential standard method to quantify the detailed subcel...

2004
Chandan Das Xianbi Xiang Xunming Deng

A new method for measuring component cell current-voltage (I-V) characteristics in a tandem-junction two-terminal solar cell is described. The measurements are performed with (a-Si/a-SiGe) tandem structure solar cell using two separate light beams of different wavelengths. The I-V characteristics of the compone nt cells are obtained and open-circuit voltage (Voc), short-circuit current (Isc) an...

2015
Sung Hwan Moon Se Jin Park Sang Hoon Kim Min Woo Lee Jisu Han Jin Young Kim Honggon Kim Yun Jeong Hwang Doh-Kwon Lee Byoung Koun Min

Tandem architecture between organic (dye-sensitized solar cell, DSSC) and inorganic (CuInGaSe2 thin film solar cell, CIGS) single-junction solar cells was constructed particularly based on a solution process. Arc-plasma deposition was employed for the Pt interfacial layer to minimize the damage to the layers of the CIGS bottom cell. Solar cell efficiency of 13% was achieved, which is significan...

2017
Luis M. Pazos-Outón Ju Min Lee Moritz H. Futscher Anton Kirch Maxim Tabachnyk Richard H. Friend Bruno Ehrler

After 60 years of research, silicon solar cell efficiency saturated close to the theoretical limit, and radically new approaches are needed to further improve the efficiency. The use of tandem systems raises this theoretical power conversion efficiency limit from 34% to 45%. We present the advantageous spectral stability of using voltage-matched tandem solar cells with respect to their traditio...

Journal: :Advanced materials 2014
Chun-Chao Chen Wei-Hsuan Chang Ken Yoshimura Kenichiro Ohya Jingbi You Jing Gao Zirou Hong Yang Yang

Tandem solar cells have the potential to improve photon conversion efficiencies (PCEs) beyond the limits of single-junction devices. In this study, a triple-junction tandem design is demonstrated by employing three distinct organic donor materials having bandgap energies ranging from 1.4 to 1.9 eV. Through optical modeling, balanced photon absorption rates are achieved and, thereby, the photo-c...

 Researchers in the field of simulation have been mainly interested in the question of how to increase the efficiency of solar cells. Therefore this study aimed to investigate CdS/CdTe solar cells by applying AMPS-1D software. The impact of semiconductor layers thickness on the output parameters of the CdS/CdTe solar cell is being analyzed and studied carefully, for example, fill factor, effici...

2016
Guanying Chen Zhijun Ning Hans Ågren

We are glad to announce the Special Issue "Nanostructured Solar Cells", published in Nanomaterials. This issue consists of eight articles, two communications, and one review paper, covering major important aspects of nanostructured solar cells of varying types. From fundamental physicochemical investigations to technological advances, and from single junction solar cells (silicon solar cell, dy...

Journal: :Nano letters 2015
Maoqing Yao Sen Cong Shermin Arab Ningfeng Huang Michelle L Povinelli Stephen B Cronin P Daniel Dapkus Chongwu Zhou

Multijunction solar cells provide us a viable approach to achieve efficiencies higher than the Shockley-Queisser limit. Due to their unique optical, electrical, and crystallographic features, semiconductor nanowires are good candidates to achieve monolithic integration of solar cell materials that are not lattice-matched. Here, we report the first realization of nanowire-on-Si tandem cells with...

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