Bookbot

Aluminum-based PVD rear-side metallization for front-junction nPERT silicon solar cells

Parametry

  • 205 stron
  • 8 godzin czytania

Więcej o książce

Aluminum-based physical vapor deposition metallization for the rear side of front-junction nPERT silicon solar cells is presented. Single-layer Al metallization is compared with Al-Si (1 at% Si) alloy and multi-layer Al-based metallization in terms of Al-spiking, specific contact resistance and back-side reflection. Al-spiking is observed when a single-layer Al metallization is used. Using an Al-Si alloy metallization, Al-spiking is avoided, however, resulting in a strong Si-precipitation. A novel approach consisting of a multi-layer Al-Si/Al stack instead of single-layer Al or Al-Si alloy metallization is developed. Optimizing the thickness of the Al-Si layer in the Al-Si/Al stack significantly decreases Si-precipitation and suppresses the Al-spiking at the same time. In addition, the optimized Al-Si/Al stack showed sufficiently low specific contact resistance and high back-side reflection and this even with a significantly higher thermal stability than the single-layer Al metallization.

Zakup książki

Aluminum-based PVD rear-side metallization for front-junction nPERT silicon solar cells, Kamal Katkhouda

Język
Rok wydania
2015
Jak tylko się pojawi, wyślemy Ci wiadomość e-mail.

Metody płatności

Nikt jeszcze nie ocenił.Oceń

Tytuł
Aluminum-based PVD rear-side metallization for front-junction nPERT silicon solar cells
Język
angielski
Rok wydania
2015
Liczba stron
205
ISBN10
3863601114
ISBN13
9783863601119
Seria
Opis
Aluminum-based physical vapor deposition metallization for the rear side of front-junction nPERT silicon solar cells is presented. Single-layer Al metallization is compared with Al-Si (1 at% Si) alloy and multi-layer Al-based metallization in terms of Al-spiking, specific contact resistance and back-side reflection. Al-spiking is observed when a single-layer Al metallization is used. Using an Al-Si alloy metallization, Al-spiking is avoided, however, resulting in a strong Si-precipitation. A novel approach consisting of a multi-layer Al-Si/Al stack instead of single-layer Al or Al-Si alloy metallization is developed. Optimizing the thickness of the Al-Si layer in the Al-Si/Al stack significantly decreases Si-precipitation and suppresses the Al-spiking at the same time. In addition, the optimized Al-Si/Al stack showed sufficiently low specific contact resistance and high back-side reflection and this even with a significantly higher thermal stability than the single-layer Al metallization.