Breakdown of the efficiency gap to 29% based on experimental input data and modeling

Author:

Brendel Rolf12,Dullweber Thorsten1,Peibst Robby1,Kranz Christopher1,Merkle Agnes1,Walter Daniel3

Affiliation:

1. Institute for Solar Energy Research Hamelin (ISFH); Am Ohrberg 1 31860 Emmerthal Germany

2. Institute for Solid State Physics; Leibniz Universität Hannover; Appelstrasse 2 30167 Hannover Germany

3. Australian National University (ANU); Research School of Engineering; North Road, Acton Canberra ACT 0200 Australia

Funder

State of Lower Saxony

HighPERC

project Hercules

the German Federal Ministry for Economic Affairs and Energy

the European Union

Publisher

Wiley

Subject

Electrical and Electronic Engineering,Condensed Matter Physics,Renewable Energy, Sustainability and the Environment,Electronic, Optical and Magnetic Materials

Reference19 articles.

1. Franklin E Fong K McIntosh K Fell A Blakers A Kho T Walter D Wang D Zin N Stocks M Wang E-C Grant N Wan Y Yang Y Zhang X Feng Z Verlinden P 29th EUPVCEC 2014, and submitted to Progress in Photovoltaics 2014 10.1002/pip.2556

2. Wagner H Dastgheib-Shirazi A Chen R Dunham ST Kessler M Altermatt PP Improving the predictive power of modeling the emitter diffusion by fully including the phosphsilicate glass (psg) layer 2011 002957 002962 10.1109/PVSC.2011.6186566

3. Theory of analyzing free energy losses in solar cells;Brendel;Applied Physics Letters,2008

4. Numerical power balance and free energy loss analysis for solar cells including optical, thermodynamic, and electrical aspects;Greulich;Journal of Applied Physics,2013

5. Petermann JH Prozessentwicklung und Verlustanalysen für dünne monokristalline Siliziumsolarzellen und deren Prozessierung auf Modullevel 2014

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