Screen-printed copper for front- and back-side metallization of single- and multi-crystalline silicon solar cells

被引:1
|
作者
Dapei, Giorgia [1 ]
Papadimitropoulos, Georgios [1 ]
Varvitsiotis, Dimitrios [2 ]
Koustas, Georgios [2 ]
Vasilopoulou, Maria [1 ]
Davazoglou, Dimitrios [1 ]
机构
[1] NCSR Demokritos, Inst Nanosci & Nanotechnol, Attiki 15310, Greece
[2] Solar Cells Hellas SA, Ind Area Patras, Patras 25200, Greece
关键词
copper; metallization; screen printing; silicon solar cells; HOT-WIRE CVD; FILMS; SYSTEM;
D O I
10.1002/pssa.201431872
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The metallization of multi-crystalline and single-crystalline Si (m-and sc-Si, respectively) photovoltaic (PV) solar cells was investigated by using copper screen print pastes designed for electronics packaging applications. For this purpose, Cu features were printed on m-Si and sc-Si silicon substrates using low pressure chemically vapor deposited (LPCVD) tungsten layers as adhesion promoters and barriers against Cu diffusion, and self-assembled monolayers (SAMs) of (3-mercaptopropyl) trimethoxysilane (MPTMS) as adhesion promoters. It was found that pastes may be annealed at temperatures of the order of 600 degrees C, in primary vacuum and under reducing ambient to give acceptable Cu/Si contacts that pass the Scotch test and standard metallic strips may be soldered on them. Contacts of the form Cu/MPTMS/m-Si were proved of limited lifetime; their study has shown that the Schottky barrier height was of the order of 0.45 eV. Screen-printed Cu/LPCVDW/Si (substrate) contacts proved stable in time for sc-Si but were found unstable for m-Si. Cu was also printed on the Al layer used for the creation of the back-surface field in industrial m-Si PV cells by using SAMs of 11-mercaptodouncyl phosphorus acid (MDTA) as adhesion promoters. The corresponding contacts did not affect the performance of cells and proved stable for a time period of the order of 1 month. (C) 2015 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim
引用
收藏
页码:2816 / 2821
页数:6
相关论文
共 50 条
  • [21] Effects of screen printing and sintering processing of front side silver grid line on the electrical performances of multi-crystalline silicon solar cells
    Hanying Wang
    Shenghua Ma
    Meiling Zhang
    Feng Lan
    Hui Wang
    Jintao Bai
    Journal of Materials Science: Materials in Electronics, 2017, 28 : 11934 - 11949
  • [22] Towards ink-jet printed fine line front side metallization of crystalline silicon solar cells
    Gizachew, Y. T.
    Escoubas, L.
    Simon, J. J.
    Pasquinelli, M.
    Loiret, J.
    Leguen, P. Y.
    Jimeno, J. C.
    Martin, J.
    Apraiz, A.
    Aguerre, J. P.
    SOLAR ENERGY MATERIALS AND SOLAR CELLS, 2011, 95 : S70 - S82
  • [23] Ni/Cu electroplating, a worthwhile alternative to use instead of Ag screen-printed front side metallization of conventional solar cells
    Bouyelfane, A.
    Zerga, A.
    MATERIALS SCIENCE IN SEMICONDUCTOR PROCESSING, 2014, 26 : 312 - 319
  • [24] Origin of Screen-Printed Metal Contact Losses in Crystalline Silicon Solar Cells
    Jeong, Myeong Sang
    Lee, Sang Hee
    Choi, Sungjin
    Min, Kwan Hong
    Lee, Jong Hoon
    Kang, Min Gu
    Jeong, Kyung Taek
    Kwak, Sang Kyu
    Song, Hee-eun
    Lee, Tae Kyung
    Park, Sungeun
    ACS APPLIED ENERGY MATERIALS, 2023, 6 (23) : 11983 - 11992
  • [25] Optimizing Annealing Steps for Crystalline Silicon Solar Cells with Screen Printed Front Side Metallization and an Oxide-Passivated Rear Surface with Local Contacts
    Kontermann, S.
    Wolf, A.
    Reinwand, D.
    Grohe, A.
    Biro, D.
    Preu, R.
    PROGRESS IN PHOTOVOLTAICS, 2009, 17 (08): : 554 - 566
  • [26] Bow in screen-printed back-contact industrial silicon solar cells
    Hilali, Mohamed M.
    Gee, James M.
    Hacke, Peter
    SOLAR ENERGY MATERIALS AND SOLAR CELLS, 2007, 91 (13) : 1228 - 1233
  • [27] Understanding and Development of Screen-Printed Front Metallization for High-Efficiency Low-to-Medium Concentrator Silicon Solar Cells
    Chen, Chia-Wei
    Kang, Moon Hee
    Upadhyaya, Vijaykumar
    Kapoor, Aditya
    Tate, John Keith
    Keane, James C.
    Ning, Steven
    Rohatgi, Ajeet
    IEEE JOURNAL OF PHOTOVOLTAICS, 2013, 3 (03): : 944 - 951
  • [28] Novel busbar design for screen-printed front side Al metallization of high-efficiency solar cell
    Schulte-Huxel, Henning
    Daschinger, Thomas
    Min, Byungsul
    Brendemuehl, Till
    Brendel, Rolf
    SOLAR ENERGY MATERIALS AND SOLAR CELLS, 2024, 264
  • [29] FABRICATION OF SCREEN-PRINTED MULTI-CRYSTALLINE SILICON SOLAR CELLS EXCEEDING 16% EFFICIENCY USING DOUBLE LAYER ANTI-REFLECTIVE COATINGS.
    Shim, Ji-myung
    Kim, Il-hwan
    Oh, Dong-joon
    Cho, Kyeong-yeon
    Lee, Eun-joo
    Lee, Hyun-woo
    Choi, Jun-young
    Kim, Ji-sun
    Shin, Jeong-eun
    Lee, Soo-hong
    Lee, Hae-seok
    35TH IEEE PHOTOVOLTAIC SPECIALISTS CONFERENCE, 2010,
  • [30] Effects of Screen-Printed Aluminum-Alloyed Front Emitter on Characteristics of Screen-Printed N-Type Silicon Solar Cells
    Chuang, Wei-Ching
    Nguyen, Manh-Tan
    Cheng, Chin-Lung
    Liu, Chi-Chung
    Ji, Guan-Yu
    IEEE INTERNATIONAL SYMPOSIUM ON NEXT-GENERATION ELECTRONICS 2013 (ISNE 2013), 2013,