Replication Data for: Resolving Spectral Mismatch Errors for Perovskite Solar Cells in Commercial Class AAA Solar Simulators (doi:10.21979/N9/WLK78G)

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Document Description

Citation

Title:

Replication Data for: Resolving Spectral Mismatch Errors for Perovskite Solar Cells in Commercial Class AAA Solar Simulators

Identification Number:

doi:10.21979/N9/WLK78G

Distributor:

DR-NTU (Data)

Date of Distribution:

2020-05-27

Version:

1

Bibliographic Citation:

Ye, Senyun; Chen, Bingbing; Cheng, Yuanhang; Feng, Minjun; Rao, Haixia; Lam, Yeng Ming; Sum, Tze Chien, 2020, "Replication Data for: Resolving Spectral Mismatch Errors for Perovskite Solar Cells in Commercial Class AAA Solar Simulators", https://doi.org/10.21979/N9/WLK78G, DR-NTU (Data), V1

Study Description

Citation

Title:

Replication Data for: Resolving Spectral Mismatch Errors for Perovskite Solar Cells in Commercial Class AAA Solar Simulators

Identification Number:

doi:10.21979/N9/WLK78G

Authoring Entity:

Ye, Senyun (Nanyang Technological University)

Chen, Bingbing (Nanyang Technological University)

Cheng, Yuanhang (National University of Singapore)

Feng, Minjun (Nanyang Technological University)

Rao, Haixia (Nanyang Technological University)

Lam, Yeng Ming (Nanyang Technological University)

Sum, Tze Chien (Nanyang Technological University)

Producer:

Sum Tze Chien

Software used in Production:

OriginPro 2018 (Academic)

Software used in Production:

OceanView

Grant Number:

start-up grant (M4080514)

Grant Number:

AcRF Tier 1 grant (RG91/19)

Grant Number:

AcRF Tier 2 grants (MOE2016-T2-1-034, MOE2017-T2-2-002, and MOE2019-T2-1-085)

Grant Number:

NRF Investigatorship (NRF-NRFI-2018-04)

Distributor:

DR-NTU (Data)

Access Authority:

Ye Senyun

Access Authority:

Sum Tze Chien

Depositor:

Ye Senyun

Date of Deposit:

2020-04-26

Holdings Information:

https://doi.org/10.21979/N9/WLK78G

Study Scope

Keywords:

Physics, Physics, Perovskite solar cell, Solar simulator, Spectral mismatch, Calibration

Topic Classification:

Perovskite solar cells

Abstract:

In this Viewpoint article, the spectral mismatch errors of three commercial Class AAA solar simulators used for typical perovskite solar cell (PSC) characterization are evaluated. Our findings indicate that the spectral mismatch of the specific solar simulators can result in measurement uncertainties over 10% for the PSCs [relative to the ideal air mass (AM) 1.5 global (G) condition], despite conforming to the International Electrotechnical Commission (IEC) standards. To minimize the spectral mismatch errors, we propose a straightforward approach to calibrate the effective irradiance of solar simulators in the spectral response range of PSCs to the identical standard level under the reference condition of AM 1.5 G. This means the irradiance measured with a single crystalline silicon (c-Si) reference cell should be adjusted to 1/M sun (M is the spectral mismatch factor) instead of the traditional 1 sun. Consequently, the measurement difference of short-circuit current density of the MAPbI3-xClx (MA=CH3NH3, x≈0.2) based PSC under the diverse solar simulators improved from a considerable ±6.4 mA cm-2 to a negligible ±0.2 mA cm-2. Importantly, our straightforward approach achieves reliable and comparable results for PSC characterization across various Class AAA solar simulators.

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Methodology and Processing

Sources Statement

Data Access

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Related Publications

Citation

Identification Number:

10.1021/acs.jpclett.0c00355

Bibliographic Citation:

Ye, S., Chen, B., Cheng, Y., Feng, M., Rao, H., Lam, Y. M., & Sum, T. C. (2020). Resolving Spectral Mismatch Errors for Perovskite Solar Cells in Commercial Class AAA Solar Simulators. The Journal of Physical Chemistry Letters, 11(10), 3782-3788.

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