3.8 Article

Overview and loss analysis of III-V single-junction and multi-junction solar cells

相关参考文献

注意:仅列出部分参考文献,下载原文获取全部文献信息。
Article Energy & Fuels

Two-terminal III-V//Si triple-junction solar cell with power conversion efficiency of 35.9 % at AM1.5g

Patrick Schygulla et al.

Summary: By optimizing the III-V top structure, the efficiency of a two-terminal wafer-bonded III-V//Si triple-junction solar cell was increased from 34.1% to 35.9%. The integration of a GaInAsP absorber in the middle cell led to an increase in open-circuit voltage, while better current matching of all subcells enhanced the short-circuit current. An upright grown structure achieved the highest cell efficiency of 35.9%, showcasing future improvement opportunities and limits.

PROGRESS IN PHOTOVOLTAICS (2022)

Article Chemistry, Physical

Triple-junction solar cells with 39.5% terrestrial and 34.2% space efficiency enabled by thick quantum well superlattices

Ryan M. France et al.

Summary: The design of multijunction solar cells takes into account both the theoretical optimal bandgap combination and the realistic limitations of materials. By modifying the bandgap of the middle cell using thick GaInAs/GaAsP strain-balanced quantum well solar cells, a high-efficiency triple-junction inverted metamorphic multijunction device has been achieved.
Article Nanoscience & Nanotechnology

In Situ Grown Nanocrystalline Si Recombination Junction Layers for Efficient Perovskite-Si Monolithic Tandem Solar Cells: Toward a Simpler Multijunction Architecture

Calum McDonald et al.

Summary: This study presents a simplified tandem solar cell structure, combining perovskite and silicon heterostructures, without the need for expensive materials and deposition steps. It is demonstrated that growing n-type hydrogenated nanocrystalline silicon on an amorphous silicon hole contact layer of the bottom cell can achieve high open-circuit voltage and power conversion efficiency.

ACS APPLIED MATERIALS & INTERFACES (2022)

Article Energy & Fuels

Solar cell efficiency tables (Version 60)

Martin A. Green et al.

Summary: This article presents consolidated tables showing the highest independently confirmed efficiencies for solar cells and modules. The guidelines for including results in these tables are outlined, and new entries since January 2022 are reviewed. An appendix describing temporary electrical contacting methods and terminology for large-area solar cells is also included.

PROGRESS IN PHOTOVOLTAICS (2022)

Article Chemistry, Physical

High Efficiency Inverted GaAs and GaInP/GaAs Solar Cells With Strain-Balanced GaInAs/GaAsP Quantum Wells

Myles A. Steiner et al.

Summary: High-efficiency solar cells are crucial for various applications, with lower energy bandgaps achieved through the use of multiple quantum wells. Incorporating strain-balanced GaAsP/GaInAs QWs into solar cells has led to increased efficiency.

ADVANCED ENERGY MATERIALS (2021)

Article Physics, Applied

Multi-junction solar cells paving the way for super high-efficiency

Masafumi Yamaguchi et al.

Summary: High-performance solar cells, particularly multi-junction solar cells using different bandgap semiconductor materials, are considered a promising pathway towards achieving high power efficiency at low cost. III-V semiconductor materials have been shown to provide an effective system for fabricating multi-junction solar cells that can span the solar spectrum, with record efficiencies demonstrating their potential. Other materials like perovskites are also being explored for their lower manufacturing costs. The development and potential market applications of multi-junction solar cells, including III-V/Si, II-VI/Si, cadmium chalcogenide/Si, and perovskite/Si tandem solar cells, are discussed based on scientific and technological arguments.

JOURNAL OF APPLIED PHYSICS (2021)

Article Energy & Fuels

Analysis for efficiency potential of high-efficiency and next-generation solar cells

Masafumi Yamaguchi et al.

PROGRESS IN PHOTOVOLTAICS (2018)

Review Physics, Applied

A review of recent progress in heterogeneous silicon tandem solar cells

Masafumi Yamaguchi et al.

JOURNAL OF PHYSICS D-APPLIED PHYSICS (2018)

Review Materials Science, Multidisciplinary

Efficiency potential and recent activities of high-efficiency solar cells

Masafumi Yamaguchi et al.

JOURNAL OF MATERIALS RESEARCH (2017)

Article Physics, Applied

Quantifying Losses in Open-Circuit Voltage in Solution-Processable Solar Cells

Jizhong Yao et al.

PHYSICAL REVIEW APPLIED (2015)

Article Physics, Applied

Enhanced external radiative efficiency for 20.8% efficient single-junction GaInP solar cells

J. F. Geisz et al.

APPLIED PHYSICS LETTERS (2013)

Article Energy & Fuels

Radiative efficiency of state-of-the-art photovoltaic cells

Martin A. Green

PROGRESS IN PHOTOVOLTAICS (2012)

Article Energy & Fuels

Solar cells: past, present, future

A Goetzberger et al.

SOLAR ENERGY MATERIALS AND SOLAR CELLS (2002)