Thin Film a-Si/poly-Si Multibandgap Tandem Solar Cells With Both Absorber Layers Deposited by Hot Wire Cvd

Author:

Schropp R.E.I.,Werf C.H.M. Van Der,Veen M.K. Van,Veenendaal P.A.T.T. Van,Zambrano R. Jimenez,Hartman Z.,Löffler J.,Rath J.K.

Abstract

ABSTRACTThe first competitive a-Si/poly-Si multibandgap tandem cells have been made in which the two intrinsic absorber layers are deposited by Hot Wire Chemical Vapor Deposition (HWCVD). These cells consist of two stacked n-i-p type solar cells on a plain stainless steel substrate using plasma deposited n- and p-type doped layers and Hot-Wire deposited intrinsic (i) layers, where the i-layer is either amorphous (band gap 1.8 eV) or polycrystalline (band gap 1.1 eV). In this tandem configuration, all doped layers are microcrystalline and the two intrinsic layers are made by decomposing mixtures of silane and hydrogen at hot filaments in the vicinity of the substrate. For the two layers we used individually optimized parameters, such as gas pressure, hydrogen dilution ratio, substrate temperature, filament temperature, and filament material. The solar cells do not comprise an enhanced back reflector, but feature a natural mechanism for light trapping, due to the texture of the (220) oriented poly-Si absorber layer and the fact that all subsequent layers are deposited conformally. The deposition rate for the throughput limiting step, the poly-Si i-layer, is ≍ 5-6 Å/s. This layer also determines the highest substrate temperature required during the preparation of these tandem cells (500 °C). The initial efficiency obtained for these tandem cells is 8.1 %. The total thickness of the silicon nip/nip structure is only 1.1 µm.

Publisher

Springer Science and Business Media LLC

Subject

General Engineering

Reference18 articles.

1. [9] Ledermann A. , Weber U. , Mukherjee C. , and Schroeder B. , Extended Abstract of the 1st International Conference on Cat-CVD (Hot-Wire CVD) Process, 2000, p51.

2. [12] Veen M.K. van and Schropp R.E.I. , to be published.

3. Thin Film Poly-Si Solar Cell on Glass Substrate Fabricated at Low Temperature

4. Novel profiled thin-film polycrystalline silicon solar cells on stainless steel substrates

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