نتایج جستجو برای: transparent dye sensitized solar

تعداد نتایج: 198686  

2014
Xiaolin Liu Min Guo Jianjun Cao Jia Lin Yuen Hong Tsang Xianfeng Chen Haitao Huang

Large-sized titanium dioxide (TiO2) nanotube arrays with an outer diameter of approximately 500 nm have been successfully synthesized by potentiostatic anodization at 180 V in a used electrolyte with the addition of 1.5 M lactic acid. It is found that the synthesized large-diameter TiO2 nanotube array shows a superior light scattering ability, which can be used as a light scattering layer to si...

Journal: :Nature materials 2010
A Nattestad A J Mozer M K R Fischer Y-B Cheng A Mishra P Bäuerle U Bach

Thin-film dye-sensitized solar cells (DSCs) based on mesoporous semiconductor electrodes are low-cost alternatives to conventional silicon devices. High-efficiency DSCs typically operate as photoanodes (n-DSCs), where photocurrents result from dye-sensitized electron injection into n-type semiconductors. Dye-sensitized photocathodes (p-DSCs) operate in an inverse mode, where dye-excitation is f...

Journal: :Nano letters 2011
Ning Cai Soo-Jin Moon Lê Cevey-Ha Thomas Moehl Robin Humphry-Baker Peng Wang Shaik M Zakeeruddin Michael Grätzel

The high molar absorption coefficient organic D-π-A dye C220 exhibits more than 6% certified electric power conversion efficiency at AM 1.5G solar irradiation (100 mW cm(-2)) in a solid-state dye-sensitized solar cell using 2,2',7,7'-tetrakis(N,N-dimethoxyphenylamine)-9,9'-spirobifluorene (spiro-MeOTAD) as the organic hole-transporting material. This contributes to a new record (6.08% by NREL) ...

Journal: :Nano letters 2005
Lukas Schmidt-Mende Jessica E Kroeze James R Durrant M K Nazeeruddin Michael Grätzel

We studied the influence of the hydrophobic hydrocarbon chain length of amphiphilic ruthenium dyes on the device performance in solid-state dye-sensitized solar cells. We found that the dyes with longer hydrocarbon chains gave higher efficiency values when used as a sensitizer in solid-state dye-sensitized solar cells. With increasing chain length, we observed higher currents and open-circuit v...

2013
Handan Acar Ruslan Garifullin Levent E. Aygun Ali K. Okyay Mustafa O. Guler

One-dimensional titania nanostructures can serve as a support for light absorbing molecules and result in an improvement in the short circuit current (Jsc) and open circuit voltage (Voc) as a nanostructured and high-surface-area material in dye-sensitized solar cells. Here, self-assembled amyloid-like peptide nanofibers were exploited as an organic template for the growth of one-dimensional tit...

Journal: :Chemical communications 2013
Huawei Zhou Yantao Shi Liang Wang Hong Zhang Chunyu Zhao Anders Hagfeldt Tingli Ma

For the first time, nonstoichiometric WO2.72 was used as a counter electrode (CE) in dye-sensitized solar cells (DSSCs). Oxygen-vacancy-rich WO2.72 nanorod bundles with notable catalytic activity for triiodide and thiolate reduction were prepared in this study. The photovoltaic parameters of dye-sensitized solar cells (DSSCs) with WO2.72 nanorod bundles as CEs are superior compared with those o...

2015
Sarita Bose Virendra Soni

The Dye Sensitized Solar Cell (DSSCs) has emerged as attractive and promising solar cells in recent years. It offers technically and economically viable option to p-n junction solar cells. However, the efficiencies of DSSCs could not compete with those of silicon solar cells. Numerous researches have been done to enhance the efficiencies of these cells over the past decades. Efficiencies up to ...

2012
Renu Guliani Amit Jain Avinashi Kapoor

Dye sensitized solar cell (DSSC) being one of the main focus in area of photovoltaic after silicon solar cell, modeling and estimating their parameters becomes important for their analysis and enhancement in their performance. We have proposed an analytical approach having no approximation for extracting various parameters of DSSC using a well known Lambert W-function technique. The model used ...

Journal: :International Journal of Photoenergy 2011

Journal: :ACS Applied Materials & Interfaces 2017

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