نتایج جستجو برای: bulk heterojunction solar cells

تعداد نتایج: 1552851  

2013
Yu-Ting Yen Yi-Kai Lin Shu-Hao Chang Hwen-Fen Hong Hsing-Yu Tuan Yu-Lun Chueh

This work presents the systematic studies of bulk hybrid heterojunction solar cells based on Cu(In, Ga)Se2 (CIGS) nanocrystals (NCs) embedded in poly(3-hexylthiophene) matrix. The CIGS NCs of approximately 17 nm in diameter were homogeneously blended with P3HT layer to form an active layer of a photovoltaic device. The blend ratios of CIGS NCs to P3HT, solvent effects on thin film morphologies,...

Journal: :Nanoscale 2015
Victor S Balderrama Josep Albero Pedro Granero Josep Ferré-Borrull Josep Pallarés Emilio Palomares Lluis F Marsal

In this work interdigitated heterojunction photovoltaic devices were manufactured. A donor layer of P3HT nanopillars was fabricated by soft nanoimprinting using nanoporous anodic alumina templates. Subsequently, the PC70BM acceptor layer was deposited by spin coating on top of the P3HT nanopillars using a solvent that would not dissolve any of the previous material. Anisole solvent was used bec...

2007
Anthony J. Miller Ross A. Hatton G. Y. Chen Ravi P. Silva

The authors report the growth of multiwall carbon nanotubes directly onto indium tin oxide glass via chemical vapor deposition as large area semitransparent electrodes for organic solar cell applications. The rate of nanotube growth on this ternary oxide is greatly reduced as compared to that of silicon dioxide and glass substrates enabling a high degree of control over nanotube height. The str...

2011
Neil D. Treat Chris G. Shuttle Michael F. Toney Craig J. Hawker Michael L. Chabinyc

Bulk heterojunction organic solar cells hold much promise as commercially viable sources of renewable energy due to their relatively inexpensive fabrication. Developing a fundamental knowledge of how processing conditions influence solar power conversion efficiency will enable rational and efficient design, optimization, and control of new organic solar cell materials. In this report, we use a ...

Journal: :International Journal of Photoenergy 2014

Journal: :Nature materials 2007
Wai-Yeung Wong Xing-Zhu Wang Ze He Aleksandra B Djurisić Cho-Tung Yip Kai-Yin Cheung Hai Wang Chris S K Mak Wai-Kin Chan

Bulk heterojunction solar cells have been extensively studied owing to their great potential for cost-effective photovoltaic devices. Although recent advances resulted in the fabrication of poly(3-hexylthiophene) (P3HT)/fullerene derivative based solar cells with efficiencies in the range 4.4-5.0%, theoretical calculations predict that the development of novel donor materials with a lower bandg...

Journal: :Physical chemistry chemical physics : PCCP 2012
Sungho Nam Minjung Shin Soohyeong Park Sooyong Lee Hwajeong Kim Youngkyoo Kim

We report the improved performance of all-polymer solar cells with bulk heterojunction nanolayers of an electron-donating polymer (poly(3-hexylthiophene) (P3HT)) and an electron-accepting polymer (poly(9,9-dioctylfluorene-co-benzothiadiazole) (F8BT)), which were both doped with 4-ethylbenzenesulfonic acid (EBSA). To choose the doping ratio of P3HT for all-polymer solar cells, various EBSA dopin...

Journal: :Advanced materials 2011
Sushobhan Avasthi Stephanie Lee Yueh-Lin Loo James C Sturm

A hybrid approach to solar cells is demonstrated in which a silicon p-n junction, used in conventional silicon-based photovoltaics, is replaced by a room-temperature fabricated silicon/organic heterojunction. The unique advantage of silicon/organic heterojunction is that it exploits the cost advantage of organic semiconductors and the performance advantages of silicon to enable potentially low-...

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