JOURNAL ARTICLE

Silicon surface passivation by atomic layer deposited Al2O3

Bram HoexJan SchmidtPeter PohlM. C. M. van de SandenW. M. M. Kessels

Year: 2008 Journal:   Journal of Applied Physics Vol: 104 (4)   Publisher: American Institute of Physics

Abstract

Thin Al2O3 films with a thickness of 7–30 nm synthesized by plasma-assisted atomic layer deposition (ALD) were used for surface passivation of crystalline silicon (c-Si) of different doping concentrations. The level of surface passivation in this study was determined by techniques based on photoconductance, photoluminescence, and infrared emission. Effective surface recombination velocities of 2 and 6 cm/s were obtained on 1.9 Ω cm n-type and 2.0 Ω cm p-type c-Si, respectively. An effective surface recombination velocity below 1 cm/s was unambiguously obtained for nearly intrinsic c-Si passivated by Al2O3. A high density of negative fixed charges was detected in the Al2O3 films and its impact on the level of surface passivation was demonstrated experimentally. The negative fixed charge density results in a flat injection level dependence of the effective lifetime on p-type c-Si and explains the excellent passivation of highly B-doped c-Si by Al2O3. Furthermore, a brief comparison is presented between the surface passivations achieved for thermal and plasma-assisted ALD Al2O3 films prepared in the same ALD reactor.

Keywords:
Passivation Atomic layer deposition Materials science Photoluminescence Doping Silicon Layer (electronics) Analytical Chemistry (journal) Carrier lifetime Plasma Deposition (geology) Optoelectronics Nanotechnology Chemistry

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465
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51
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1.00
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Citation History

Topics

Silicon and Solar Cell Technologies
Physical Sciences →  Engineering →  Electrical and Electronic Engineering
Semiconductor materials and devices
Physical Sciences →  Engineering →  Electrical and Electronic Engineering
Silicon Nanostructures and Photoluminescence
Physical Sciences →  Materials Science →  Materials Chemistry
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