Nanocomposites for organic and hybrid organic-inorganic solar cells

被引:0
|
作者
Reale, A. [1 ]
Brown, T. M.
Di Carlo, A. [1 ]
Giannini, F. [1 ]
Brunetti, F. [1 ,2 ]
Leonardi, E. [1 ]
Lucci, M. [1 ,3 ]
Terranova, M. L. [3 ]
Orlanducci, S. [3 ]
Tamburri, E. [3 ]
Toschi, F. [3 ]
Sessa, V. [3 ]
机构
[1] Univ Roma Tor Vergata, Dipartimento Ingn Elettron, Via Politecn 1, I-00133 Rome, Italy
[2] Tech Univ Munich, Lehrstuhl Nanoelekt, D-80333 Munich, Germany
[3] Univ Roma Tor Vergata, Dip Sci & Tecnol Chim, I-00133 Rome, Italy
来源
ORGANIC PHOTOVOLTAICS VII | 2006年 / 6334卷
关键词
dye sensitized solar cells; organic solar cells; flexible substrates; nanocomposites;
D O I
10.1117/12.680809
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
The importance of nanocomposites materials such as carbon nanotubes-polymers composites for the efficient realization of innovative solar cells based on organic as well hybrid organic-inorganic solar cells is more and more evident. We present a study on the realization of dye sensitized solar cells (DSSC) and sublimation deposited solar cells, considering the impact of using nanocomposite materials in the different sections composing the cells. We discuss the effect of using poly-3,4-ethylene dioxythiophene/poly(styrene sulfonate) (PEDOT/PSS)-Carbon nanotube (CNT) blend as counter-electrode in DSSC on the cell efficiency and fill factor, also considering DSSC structures where low cost, innovative dyes are used. Nanocomposites can be used as solution processed or electropolimerized electrodes, where accurate control of nanotube dispersion is obtained through specific chemical treatment of Carbon nanotubes solubility. The use of Carbon based nanostructured material is also investigated in terms of their positive impact on the realization of organic solar cells on flexible substrates.
引用
收藏
页数:8
相关论文
共 50 条
  • [1] Hybrid Organic/Inorganic Nanocomposites for Photovoltaic Cells
    Liu, Ruchuan
    MATERIALS, 2014, 7 (04): : 2747 - 2771
  • [2] Organic-inorganic upconversion nanoparticles hybrid in dye-sensitized solar cells
    Ansari, Anees A.
    Nazeeruddin, M. K.
    Tavakoli, Mohammad Mahdi
    COORDINATION CHEMISTRY REVIEWS, 2021, 436
  • [3] Polymetalates Based Organic-Inorganic Nanocomposites
    Judeinstein, P.
    Schmidt, H.
    JOURNAL OF SOL-GEL SCIENCE AND TECHNOLOGY, 1994, 3 (03) : 189 - 197
  • [4] Synthesis of organic-inorganic hybrid polymeric nanocomposites for the hard coat application
    Shu, Chuan Hsiao
    Chiang, Hau-Chun
    Tsiang, Raymond Chien-Chao
    Liu, Ta-Jo
    Wu, Jeng-Jaw
    JOURNAL OF APPLIED POLYMER SCIENCE, 2007, 103 (06) : 3985 - 3993
  • [5] Effects of Insulation Coating with Metal Salt on the Performance of Organic-Inorganic Hybrid Solar Cells
    Kim, Jong Tae
    Kim, Cham
    Kim, Hoyoung
    Park, Sung Hwan
    Son, Kyoung-Cheon
    Han, Yoon Soo
    MOLECULAR CRYSTALS AND LIQUID CRYSTALS, 2010, 532 : 417 - 423
  • [6] Dendrimers for Photon Harvesting in Organic and Organic/Inorganic Hybrid Solar Cells
    An, Byeong-Kwan
    Langley, Benjamin
    Burn, Paul
    Meredith, Paul
    ORGANIC PHOTOVOLTAICS X, 2009, 7416
  • [7] Nanoscale Organic-Inorganic Hybrid Lubricants
    Kim, Daniel
    Archer, Lynden A.
    LANGMUIR, 2011, 27 (06) : 3083 - 3094
  • [8] Organic-inorganic nanocomposites for shape memory effects
    Bae, Cha Young
    Park, Hong Chae
    Kim, Byung Kyu
    HIGH PERFORMANCE POLYMERS, 2011, 23 (07) : 518 - 525
  • [9] Manufacture of photovoltaic cells with hybrid organic-inorganic bulk heterojunction
    Jarka, Pawel
    Taski, Tomasz
    Matysiak, Wiktor Jerzy
    Jarzabek, Bozena
    Hajduk, Barbara
    MATERIALS AND MANUFACTURING PROCESSES, 2018, 33 (08) : 912 - 922
  • [10] Formation of Hybrid Inorganic/Organic Nanocomposites
    Tamara V. Basova
    Nadezhda M. Kurochkina
    Aslan Yu. Tsivadze
    Asim K. Ray
    Journal of Electronic Materials, 2010, 39 : 145 - 148