Phthalocyanine and metal phthalocyanine are hole transport buffer layers for perovskite solar cell fabrication

This approach allows you to more accurately evaluate the performance of solar panels and identify any prob- lems or degradation in their operation. The LUMO value of mPc closer to the LUMO value of CH3NH3I3PbClx increased conversion energy and short circuit current density (Jsc), which reached a...

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Main Authors: Т.М. Мұқаметқали, А.К. Аймуханов, А.К. Зейниденов
Format: Article
Language:English
Published: Academician Ye.A. Buketov Karaganda University 2024-09-01
Series:Қарағанды университетінің хабаршысы. Физика сериясы
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Online Access:https://phs.buketov.edu.kz/index.php/physics-vestnik/article/view/712
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author Т.М. Мұқаметқали
А.К. Аймуханов
А.К. Зейниденов
author_facet Т.М. Мұқаметқали
А.К. Аймуханов
А.К. Зейниденов
author_sort Т.М. Мұқаметқали
collection DOAJ
description This approach allows you to more accurately evaluate the performance of solar panels and identify any prob- lems or degradation in their operation. The LUMO value of mPc closer to the LUMO value of CH3NH3I3PbClx increased conversion energy and short circuit current density (Jsc), which reached a maximum value of 15.97 mA/cm² using the HTL layer of CuPc, and the open circuit voltage (Voc) reached a maximum at 0.97 V. The change in Jsc corresponds to the fill factor (FF) change. The filling factor (FF) reached a maximum value of 67.35 % when using the HTL layer of CuPc and a minimum value (FF) of 54.23 % when using the HTL layer of H2Pc. The lowest series resistance (R1) and interface resistance (R3) of 11.2 and 39.9 Ohms, respectively, were shown with the HTL layer of CuPc, Capacitive element CPE1 — 305 pF, Capacitive element CPE2 — 0.95 pF. CPE (Constant Phase Element) is an element used in equivalent circuits to describe the non-ideal dielectric properties of materials. The decrease in CPE1 may indicate a decrease in the heterogeneity of the dielectric properties of the perovskite material after coating with different HTL mPc layers. This may be due to changes in structure or mutual actions between layers as a result of exposure to differences in energy levels.
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2663-5089
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publishDate 2024-09-01
publisher Academician Ye.A. Buketov Karaganda University
record_format Article
series Қарағанды университетінің хабаршысы. Физика сериясы
spelling doaj-art-53fa00ff4080470ebabc99a89b17af212025-08-20T02:27:05ZengAcademician Ye.A. Buketov Karaganda UniversityҚарағанды университетінің хабаршысы. Физика сериясы2518-71982663-50892024-09-0111529310.31489/2024ph3/41-50Phthalocyanine and metal phthalocyanine are hole transport buffer layers for perovskite solar cell fabricationТ.М. МұқаметқалиА.К. АймухановА.К. Зейниденов This approach allows you to more accurately evaluate the performance of solar panels and identify any prob- lems or degradation in their operation. The LUMO value of mPc closer to the LUMO value of CH3NH3I3PbClx increased conversion energy and short circuit current density (Jsc), which reached a maximum value of 15.97 mA/cm² using the HTL layer of CuPc, and the open circuit voltage (Voc) reached a maximum at 0.97 V. The change in Jsc corresponds to the fill factor (FF) change. The filling factor (FF) reached a maximum value of 67.35 % when using the HTL layer of CuPc and a minimum value (FF) of 54.23 % when using the HTL layer of H2Pc. The lowest series resistance (R1) and interface resistance (R3) of 11.2 and 39.9 Ohms, respectively, were shown with the HTL layer of CuPc, Capacitive element CPE1 — 305 pF, Capacitive element CPE2 — 0.95 pF. CPE (Constant Phase Element) is an element used in equivalent circuits to describe the non-ideal dielectric properties of materials. The decrease in CPE1 may indicate a decrease in the heterogeneity of the dielectric properties of the perovskite material after coating with different HTL mPc layers. This may be due to changes in structure or mutual actions between layers as a result of exposure to differences in energy levels. https://phs.buketov.edu.kz/index.php/physics-vestnik/article/view/712Perovskite solar cellshole transport layersmetalphthalocyanineabsorption spectraphotovoltaic propertieselectrical impedance spectroscopy
spellingShingle Т.М. Мұқаметқали
А.К. Аймуханов
А.К. Зейниденов
Phthalocyanine and metal phthalocyanine are hole transport buffer layers for perovskite solar cell fabrication
Қарағанды университетінің хабаршысы. Физика сериясы
Perovskite solar cells
hole transport layers
metalphthalocyanine
absorption spectra
photovoltaic properties
electrical impedance spectroscopy
title Phthalocyanine and metal phthalocyanine are hole transport buffer layers for perovskite solar cell fabrication
title_full Phthalocyanine and metal phthalocyanine are hole transport buffer layers for perovskite solar cell fabrication
title_fullStr Phthalocyanine and metal phthalocyanine are hole transport buffer layers for perovskite solar cell fabrication
title_full_unstemmed Phthalocyanine and metal phthalocyanine are hole transport buffer layers for perovskite solar cell fabrication
title_short Phthalocyanine and metal phthalocyanine are hole transport buffer layers for perovskite solar cell fabrication
title_sort phthalocyanine and metal phthalocyanine are hole transport buffer layers for perovskite solar cell fabrication
topic Perovskite solar cells
hole transport layers
metalphthalocyanine
absorption spectra
photovoltaic properties
electrical impedance spectroscopy
url https://phs.buketov.edu.kz/index.php/physics-vestnik/article/view/712
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AT akajmuhanov phthalocyanineandmetalphthalocyanineareholetransportbufferlayersforperovskitesolarcellfabrication
AT akzejnidenov phthalocyanineandmetalphthalocyanineareholetransportbufferlayersforperovskitesolarcellfabrication