Determination of Temperature‐ and Carrier‐Dependent Surface Recombination in Silicon

Author:

Le Anh Huy Tuan1ORCID,Nie Shuai1,Ochoa Eduardo Prieto1,Rodriguez John1,Bonilla Ruy Sebastian2,Hameiri Ziv1

Affiliation:

1. School of Photovoltaic and Renewable Energy Engineering University of New South Wales Sydney NSW 2052 Australia

2. Department of Materials University of Oxford Oxford OX1 3PH UK

Abstract

Knowledge regarding the temperature dependence of the surface recombination at the interface between silicon and various dielectrics is critically important as it 1) provides fundamental information regarding the interfaces and 2) improves the modeling of solar cell performance under actual operating conditions. Herein, the temperature‐ and carrier‐dependent surface recombination at the silicon–oxide/silicon and aluminum–oxide/silicon interfaces in the temperature range of 25−90 °C using an advanced technique is investigated. This method enables to control the surface carrier population from heavy accumulation to heavy inversion via an external bias voltage, allowing for the decoupling of the bulk and surface contributions to the effective lifetime. Thus, it offers a simple and versatile manner to separate the chemical passivation from the charge‐assisted population control at the silicon/dielectric interface. A model is established to obtain the temperature dependence of the capture cross sections, a critical capability for the optimization of the dielectric layers and the investigation of the fundamental properties of the passivation under field operating conditions.

Funder

Australian Renewable Energy Agency

Publisher

Wiley

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