MECHANICAL STABILITY OF THE P-I-N SOLAR CELLS STUDIED BY INDENTATION METHOD

被引:0
|
作者
Bursikova, Vilma [1 ,2 ]
Sladek, Petr [3 ]
Stahel, Pavel [1 ]
机构
[1] Masaryk Univ, Fac Sci, Dept Phys Elect, CS-61137 Brno, Czech Republic
[2] Masaryk Univ, Cent European Inst Technol, CEITEC, CS-60177 Brno, Czech Republic
[3] Masaryk Univ, Fac Educ, Dept Phys Chem & Vocat Educ, Brno 60300, Czech Republic
来源
CHEMICKE LISTY | 2012年 / 106卷
关键词
solar cells; mechanical stability; hardness; elastic modulus; interfacial fracture toughness;
D O I
暂无
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The main priorities when preparing the p-i-n amorphous silicon based solar cells are the efficiency as well as the optoelectronic stability of the cells. However, for the final applications, a good mechanical and thermomechanical stability is not of the second order of importance. The large internal mechanical stress, weak adhesion can result the deterioration of the solar cell (cracking, delamination). The objective of our study was to investigate the mechanical properties of p-i-n amorphous silicon based solar cells by means of depth sensing indentation technique (Fisherscope H100). The instrumented indentation method combined with the study of the morphology of the indentation prints enable us to determinate microhardness, fracture toughness of the interface with substrate and internal stress.
引用
收藏
页码:S1491 / S1494
页数:4
相关论文
共 50 条
  • [1] Organic p-i-n solar cells
    Maennig, B
    Drechsel, J
    Gebeyehu, D
    Simon, P
    Kozlowski, F
    Werner, A
    Li, F
    Grundmann, S
    Sonntag, S
    Koch, M
    Leo, K
    Pfeiffer, M
    Hoppe, H
    Meissner, D
    Sariciftci, NS
    Riedel, I
    Dyakonov, V
    Parisi, J
    APPLIED PHYSICS A-MATERIALS SCIENCE & PROCESSING, 2004, 79 (01): : 1 - 14
  • [2] Organic p-i-n solar cells
    B. Maennig
    J. Drechsel
    D. Gebeyehu
    P. Simon
    F. Kozlowski
    A. Werner
    F. Li
    S. Grundmann
    S. Sonntag
    M. Koch
    K. Leo
    M. Pfeiffer
    H. Hoppe
    D. Meissner
    N.S. Sariciftci
    I. Riedel
    V. Dyakonov
    J. Parisi
    Applied Physics A, 2004, 79 : 1 - 14
  • [3] P-I-N junction organic solar cells
    Hiramoto, Masahiro
    Suemori, Kouji
    Matsumura, Yoshio
    Miyata, Takahiro
    Yokoyama, Masaaki
    MOLECULAR CRYSTALS AND LIQUID CRYSTALS, 2006, 455 : 267 - 275
  • [4] P-I-N + N-I-P BASIS SOLAR-CELLS
    UCHIDA, Y
    JAPAN ANNUAL REVIEWS IN ELECTRONICS COMPUTERS & TELECOMMUNICATIONS, 1984, 16 : 180 - 199
  • [5] Perspectives on various-temperature stability of p-i-n perovskite solar cells
    Tang, Ying
    Liu, Yufang
    Li, Meng
    APPLIED PHYSICS LETTERS, 2025, 126 (01)
  • [6] Effect of polyelectrolyte interlayer on efficiency and stability of p-i-n perovskite solar cells
    Yang, Haifeng
    Zhang, Jincheng
    Zhang, Chunfu
    Chang, Jingjing
    Lin, Zhenhua
    Chen, Dazheng
    Sun, Xu
    Xi, He
    Han, Genquan
    Hao, Yue
    SOLAR ENERGY, 2016, 139 : 190 - 198
  • [7] Inverted Hysteresis in n-i-p and p-i-n Perovskite Solar Cells
    Garcia-Rodriguez, Rodrigo
    Riquelme, Antonio J.
    Cowley, Matthew
    Valadez-Villalobos, Karen
    Oskam, Gerko
    Bennett, Laurence J.
    Wolf, Matthew J.
    Contreras-Bernal, Lidia
    Cameron, Petra J.
    Walker, Alison B.
    Anta, Juan A.
    ENERGY TECHNOLOGY, 2022, 10 (12)
  • [8] p-i-n Perovskite Solar Cells on Steel Substrates
    Feleki, Benjamin T.
    Bouwer, Ricardo K. M.
    Zardetto, Valerio
    Wienk, Martijn M.
    Janssen, Rene A. J.
    ACS APPLIED ENERGY MATERIALS, 2022, 5 (06) : 6709 - 6715
  • [9] Organic solar cells incorporating a p-i-n junction
    Hiramoto, M
    Suemori, K
    Yokoyama, M
    MOLECULAR CRYSTALS AND LIQUID CRYSTALS, 2006, 444 : 33 - 40
  • [10] InN p-i-n Nanowire Solar Cells on Si
    Hieu Pham Trung Nguyen
    Chang, Yi-Lu
    Shih, Ishiang
    Mi, Zetian
    IEEE JOURNAL OF SELECTED TOPICS IN QUANTUM ELECTRONICS, 2011, 17 (04) : 1062 - 1069