loading page

A horizontal double-sided Copper metallisation technology designed for solar cell mass-production
  • +5
  • Lu Wang,
  • Yusen Qin,
  • Meilin Peng,
  • Meixian Huang,
  • ZhiPeng Liu,
  • Yibo Lu,
  • Guohua Zhou,
  • Jingjia Ji
Lu Wang
Jiangsu Xianghuan Technology Co Ltd

Corresponding Author:348977155@qq.com

Author Profile
Yusen Qin
Jiangsu Xianghuan Technology Co Ltd
Author Profile
Meilin Peng
Jiangnan University
Author Profile
Meixian Huang
Jiangnan University
Author Profile
ZhiPeng Liu
Jiangnan University
Author Profile
Yibo Lu
Jiangsu Xianghuan Technology Co Ltd
Author Profile
Guohua Zhou
Jiangsu Xianghuan Technology Co Ltd
Author Profile
Jingjia Ji
Jiangsu Xianghuan Technology Co Ltd
Author Profile

Abstract

javascript:void(0) In the international photovoltaic market, the "carbon footprint" label has received great attention, and low-carbon footprint products are widely popular. Compared with metallic silver, copper has the characteristics of low carbon emissions and low cost, which can effectively reduce the carbon footprint. Based on this, this article reports a horizontal double-sided Copper metallisation technology. This technology can not only metallize the front and back sides of various types of silicon solar cells at the same time, but also has fast speed, good uniformity, and simple process, making it suitable for the industrial mass production of solar cells. This article describes the structure and manufacturing process of TOPCon solar cells patterned with ultrashort pulse laser and metallized using this novel horizontal double-sided copper metallisation technology. In this batch, average efficiency reached above 26%.
19 May 2024Submitted to Progress in Photovoltaics
31 Jul 2024Reviewer(s) Assigned
03 Sep 2024Review(s) Completed, Editorial Evaluation Pending
03 Sep 2024Editorial Decision: Revise Minor
10 Sep 20241st Revision Received
19 Sep 2024Review(s) Completed, Editorial Evaluation Pending
19 Sep 2024Submission Checks Completed
19 Sep 2024Assigned to Editor
21 Oct 2024Editorial Decision: Accept