4.7 Article

Interface Tuning through the MoO3 Additive in Al Paste to Enhance the Performance of Crystalline Silicon Solar Cells

Journal

ACS APPLIED ENERGY MATERIALS
Volume -, Issue -, Pages -

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acsaem.2c01737

Keywords

thermit reaction; back surface field; barrier height; contact resistance; series resistance

Funding

  1. Soft Science Research Project of Guangdong Province
  2. Guangdong Innovative Team Program
  3. [2017B030301013]
  4. [2013N080]

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The efficiency of silicon solar cells is improved by optimizing the aluminum-back surface field (Al-BSF) using MoO3 as an additive for the back contact.
The efficiency of silicon solar cells is largely affected by the quality of the front and back metallic contacts. In this work, MoO3 is added to the Al paste for the back contact of crystalline silicon solar cells. The MoO3 additive lowers the series resistance of the solar cell from 4.1 to 3.5 m omega and increases the photoelectric conversion efficiency from 19.26 to 19.54%. We identify that the thermite reaction between MoO3 and Al takes place at about 800 degrees C and metallic Mo diffuses into the Al-Si solid layer, decreasing the barrier height between Al and Si and lowering the contact resistance. This work demonstrates an approach by optimizing the aluminum-back surface field (Al-BSF) in the back metallic contact of crystalline silicon solar cells to enhance the performance of the cell.

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