4.8 Article

Transparent-conductive-oxide-free front contacts for high-efficiency silicon heterojunction solar cells

Journal

JOULE
Volume 5, Issue 6, Pages 1535-1547

Publisher

CELL PRESS
DOI: 10.1016/j.joule.2021.04.004

Keywords

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Funding

  1. HEMF (Helmholtz Energy Materials Foundry) - Helmholtz Association (HGF)
  2. German Federal Ministry of Economic Affairs and Energy [0324198D]

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In this study, TCO layers are substituted by utilizing lateral conduction of c-Si absorber in SHJ solar cells, achieving a TCO-free design with low series resistivity and good fill factor. Suppressing metal diffusion into a-Si:H layer through ozone treatment at the a-Si:H/metal interface improves passivation quality without increasing contact resistivity, enabling SHJ solar cells with TCO-free front contacts to achieve efficiencies exceeding 22%.
In order to compensate the insufficient conductance of heterojunction thin films, transparent conductive oxides (TCO) have been used for decades in both sides of contacted crystalline silicon heterojunction (SHJ) solar cells to provide lateral conduction for carrier collection. In this work, we substitute the TCO layers by utilizing the lateral conduction of c-Si absorber, thereby enabling a TCO-free design for SHJ solar cells achieving a low series resistivity of 0.32 Omega cm(2) and a good fill factor of 80.7% with a conventional finger pitch of 1.8 mm. Achieving high efficiencies in TCO-free SHJ solar cells requires suppressing deterioration of the passivation quality induced by the direct metal-to-a-Si:H contacts, We show that an ozone treatment at the a-Si:H/metal interface suppresses the metal diffusion into the a-Si:H layer and improves the passivation without increasing the contact resistivity. SHJ solar cells with TCO-free front contacts and ozone treatment achieve efficiencies of >22%.

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