
Electrical Material Properties and Efficiency Limits of Compensated and Multicrystalline Silicon for
Kurzinformation



inkl. MwSt. Versandinformationen
Artikel zZt. nicht lieferbar
Artikel zZt. nicht lieferbar

Beschreibung
Increasing the efficiency and reducing the production costs are the two main goals of the optimization of crystalline silicon solar cells. This thesis addresses the impact of efficiency- limiting defects in crystalline silicon from cheaper production routes, namely upgraded metallurgical grade silicon and multicrystalline silicon, and presents an approach for the fabrication of high efficiency solar cells on low-cost multicrystalline silicon substrate.Upgraded metallurgical grade silicon typically features significant amounts of both types of dopants, acceptors and donors, which leads to a so-called charge carrier compensation. The impact of compensation on charge carrier mobility is investigated and a unified model for charge carrier mobilities in uncompensated and compensated silicon is developed.Multicrystalline silicon features structural crystal defects, such as grain boundaries and dislocations, as well as a large amount of metal impurities incorporated from the crucible system into the silicon during crystallization. In this thesis, efficiency losses due to impurities from the crucible system are quantified, the role of the doping type is evaluated, and the efficiency limit for solar cells based on high performance multicrystalline silicon substrate is assessed.
Produktdetails

So garantieren wir Dir zu jeder Zeit Premiumqualität.
Über den Autor
- Gebunden
- 209 Seiten
- Erschienen 2016
- De Gruyter
- Gebunden
- 736 Seiten
- Erschienen 2021
- Wiley-VCH
- paperback
- 818 Seiten
- Erschienen 2024
- Elsevier
- Hardcover
- 416 Seiten
- Erschienen 2022
- Wiley-IEEE Press
- Gebunden
- 557 Seiten
- Erschienen 2012
- Wiley-VCH
- Hardcover
- 394 Seiten
- Erschienen 2015
- Academic Press
- hardcover
- 484 Seiten
- Erschienen 2015
- Wiley-VCH
- Gebunden
- 352 Seiten
- Erschienen 2015
- Wiley-VCH
- hardcover
- 283 Seiten
- Erschienen 2012
- Wiley-VCH
- Gebundene Ausgabe
- 493 Seiten
- Erschienen 2011
- Springer
- Gebunden
- 1088 Seiten
- Erschienen 2012
- -