A high throughput, linear molecular beam epitaxy system for reduced cost manufacturing of GaAs photovoltaic cells: will GaAs ever be inexpensive enough?

Author:

Lee Byungjun1234ORCID,Fan Dejiu1234,Forrest Stephen R.12345ORCID

Affiliation:

1. Department of Electrical Engineering and Computer Science

2. University of Michigan

3. Ann Arbor

4. USA

5. Departments of Physics and Materials Science and Engineering

Abstract

A high volume linear molecular beam growth system is proposed. Costs of GaAs cells grown by this or other technologies remains ∼10× higher than silicon solar cells.

Funder

Army Research Laboratory

Publisher

Royal Society of Chemistry (RSC)

Subject

Energy Engineering and Power Technology,Fuel Technology,Renewable Energy, Sustainability and the Environment

Reference24 articles.

1. NREL , Best research-cell efficiency chart , https://www.nrel.gov/pv/assets/pdfs/best-research-cell-efficiencies.20190802.pdf , accessed 2 August 2019

2. Wafer reuse for repeated growth of III-V solar cells

3. Non-Destructive Wafer Recycling for Low-Cost Thin-Film Flexible Optoelectronics

4. Transforming the cost of solar-to-electrical energy conversion: Integrating thin-film GaAs solar cells with non-tracking mini-concentrators

5. R. Tatavarti , G.Hillier , A.Dzankovic , G.Martin , F.Tuminello , R.Navaratnarajah , G.Du , D. P.Vu and N.Pan , in 2008 33rd IEEE Photovolatic Specialists Conference , IEEE , 2008 , pp. 1–4

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