>35% 5-junction space solar cells based on the direct bonding technique

Author:

Li Xinyi,Li Ge,Lu Hongbo,Zhang Wei

Abstract

Abstract Multijunction solar cells are the highest efficiency photovoltaic devices yet demonstrated for both space and terrestrial applications. In recent years five-junction cells based on the direct semiconductor bonding technique (SBT), demonstrates space efficiencies >35% and presents application potentials. In this paper, the major challenges for fabricating SBT 5J cells and their appropriate strategies involving structure tunning, band engineering and material tailoring are stated, and 4-cm 2 35.4% (AM0, one sun) 5J SBT cells are presented. Further efforts on detailed optical managements are required to improve the current generating and matching in subcells, to achieve efficiencies 36%–37%, or above.

Publisher

IOP Publishing

Subject

Materials Chemistry,Electrical and Electronic Engineering,Condensed Matter Physics,Electronic, Optical and Magnetic Materials

Reference20 articles.

1. High performance 5J and 6J direct bonded (SBT) space solar cells;Chiu;2015 IEEE 42nd Photovoltaic Specialist Conference (PVSC),2015

2. 35.8% space and 38.8% terrestrial 5J direct bonded cells;Chiu;2014 IEEE 40th Photovoltaic Specialist Conference (PVSC),2014

3. Direct semiconductor bonded 5J cell for space and terrestrial applications;Chiu;IEEE J Photovolt,2014

4. Six-junction III–V solar cells with 47.1% conversion efficiency under 143 Suns concentration;Geisz;Nat Energy,2020

5. Building a six-junction inverted metamorphic concentrator solar cell;Geisz;IEEE J Photovolt,2018

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