Radial heteroemitter solar cells based on VLS grown silicon nanowires

被引:13
|
作者
Eisenhawer, Bjoern [1 ]
Sill, Ingo [1 ]
Falk, Fritz [1 ]
机构
[1] Inst Photon Technol, D-07745 Jena, Germany
来源
PHYSICA STATUS SOLIDI A-APPLICATIONS AND MATERIALS SCIENCE | 2013年 / 210卷 / 04期
关键词
a-Si; heteroemitter lightt rapping; silicon nanowires; silicon; solar cells; vaporliquidsolid; SINGLE;
D O I
10.1002/pssa.201200374
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Silicon nanowires (SiNWs) are an interesting system for the realization of solar cells, as they offer an enhanced light absorption compared to bulk Si. However, due to their large surface, nanowire solar cells suffer from high surface recombination which results in small carrier lifetimes. They therefore need perfect passivation. The use of an amorphous silicon heteroemitter on such structures enables a good surface passivation and therefore enables a higher open circuit voltage (VOC) than in crystalline coreshell structures. In this paper, we present the realization of radial junction SiNW solar cells by the vaporliquidsolid (VLS) growth of n-doped SiNWs and subsequent coating by amorphous silicon in a PECVD process. The cells were contacted using atomic layer deposition of a transparent conductive oxide (aluminum-doped zinc oxide) as a front contact. The results of the SiNW solar cells are compared to a planar device to exclude the influence of the supporting wafer structure. The onset presented in this paper can possibly be used to realize SiNW based solar cells on low cost materials, as VLS enables the growth of SiNWs on almost any kind of surfaces.
引用
收藏
页码:695 / 700
页数:6
相关论文
共 50 条
  • [11] Antireflection Layers for Solar Cells Based on Silicon Nanowires Produced on a Doped Wafer
    A. V. Pavlikov
    O. V. Rakhimova
    P. K. Kashkarov
    Moscow University Physics Bulletin, 2018, 73 : 199 - 204
  • [12] Development of silicon nanowires with optimized characteristics and fabrication of radial junction solar cells with < 100 nm amorphous silicon absorber layer
    Ahmed, Nafis
    Ramasamy, P.
    Bhargav, P. Balaji
    Rayerfrancis, Arokiyadoss
    Chandra, Balaji
    MATERIALS SCIENCE IN SEMICONDUCTOR PROCESSING, 2020, 106
  • [13] Design and fabrication of silicon nanowires towards efficient solar cells
    Yu, Peng
    Wu, Jiang
    Liu, Shenting
    Xiong, Jie
    Jagadish, Chennupati
    Wang, Zhiming M.
    NANO TODAY, 2016, 11 (06) : 704 - 737
  • [14] Fundamental Strategy for Creating VLS Grown TiO2 Single Crystalline Nanowires
    Zhuge, Fuwei
    Yanagida, Takeshi
    Nagashima, Kazuki
    Yoshida, Hideto
    Kanai, Masaki
    Xu, Bo
    Klamchuen, Annop
    Meng, Gang
    He, Yong
    Rahong, Sakon
    Li, Xiaomin
    Suzuki, Masaru
    Kai, Shoichi
    Takeda, Seiji
    Kawai, Tomoji
    JOURNAL OF PHYSICAL CHEMISTRY C, 2012, 116 (45) : 24367 - 24372
  • [15] Numerical simulation of vertical silicon nanowires based heterojunction solar cells
    Zanuccoli, Mauro
    Michallon, Jerome
    Semenihin, Igor
    Fiegna, Claudio
    Kaminski-Cachopo, Anne
    Sangiorgi, Enrico
    Vyurkov, Vladimir
    PROCEEDINGS OF THE 3RD INTERNATIONAL CONFERENCE ON CRYSTALLINE SILICON PHOTOVOLTAICS (SILICONPV 2013), 2013, 38 : 216 - 222
  • [16] Hybrid Solar Cells Based in Silicon Nanowires: Electronic Simulation and Optimization
    Faltakh, Hana
    Bourguiga, Ramzi
    Ben Ahmed, Amira
    SILICON, 2021, 13 (12) : 4201 - 4213
  • [17] Gold Contamination in VLS-Grown Si Nanowires: Multiwavelength Anomalous Diffraction Investigations
    Dupre, Ludovic
    Buttard, Denis
    Leclere, Cedric
    Renevier, Hubert
    Gentile, Pascal
    CHEMISTRY OF MATERIALS, 2012, 24 (23) : 4511 - 4516
  • [18] Hybrid Solar Cells Based in Silicon Nanowires: Electronic Simulation and Optimization
    Hana Faltakh
    Ramzi Bourguiga
    Amira Ben Ahmed
    Silicon, 2021, 13 : 4201 - 4213
  • [19] Obtaining Uniform Dopant Distributions in VLS-Grown Si Nanowires
    Koren, E.
    Hyun, J. K.
    Givan, U.
    Hemesath, E. R.
    Lauhon, L. J.
    Rosenwaks, Y.
    NANO LETTERS, 2011, 11 (01) : 183 - 187
  • [20] Influence of the polymer matrix on the efficiency of hybrid solar cells based on silicon nanowires
    Ben Dkhil, S.
    Bourguiga, R.
    Davenas, J.
    Cornu, D.
    MATERIALS SCIENCE AND ENGINEERING B-ADVANCED FUNCTIONAL SOLID-STATE MATERIALS, 2012, 177 (02): : 173 - 179