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Origin of electric field-dependent charge generation in organic photovoltaics with planar and bulk heterojunctions
In organic photovoltaics (OPVs), electric field-dependent charge generation often degrades the fill factor and power conversion efficiency, but its origin remains unclear. This work evaluates the electric field dependence for various non-fullerenes, fullerenes, and electron-donating polymers in OPVs...
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Published in: | Journal of materials chemistry. A, Materials for energy and sustainability Materials for energy and sustainability, 2023-12, Vol.11 (48), p.26499-2657 |
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container_end_page | 2657 |
container_issue | 48 |
container_start_page | 26499 |
container_title | Journal of materials chemistry. A, Materials for energy and sustainability |
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creator | Nakano, Kyohei Kaji, Yumiko Tajima, Keisuke |
description | In organic photovoltaics (OPVs), electric field-dependent charge generation often degrades the fill factor and power conversion efficiency, but its origin remains unclear. This work evaluates the electric field dependence for various non-fullerenes, fullerenes, and electron-donating polymers in OPVs with bulk heterojunction (BHJ) and planar heterojunction (PHJ) structures. We found that the electric field dependence in the charge generation process is more obvious in PHJ than in BHJ structures, even when the same electron donor and acceptor material are used. The insufficient energy difference between singlet excited and charge transfer states primarily causes the electric field-dependent charge generation. In addition, the relative molecular orientation between the donor and acceptor molecules at the interfaces could also be an essential factor determining the charge generation. The results suggest that the end-on orientation of the acceptor molecules to the donor domain is advantageous for efficient field-independent charge generation.
The electric field dependence in the charge generation process of organic solar cells in planar heterojunction and bulk heterojunction structures is related to the energetics and molecular orientation at the donor/acceptor interfaces. |
doi_str_mv | 10.1039/d3ta06835h |
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The electric field dependence in the charge generation process of organic solar cells in planar heterojunction and bulk heterojunction structures is related to the energetics and molecular orientation at the donor/acceptor interfaces.</description><identifier>ISSN: 2050-7488</identifier><identifier>EISSN: 2050-7496</identifier><identifier>DOI: 10.1039/d3ta06835h</identifier><language>eng</language><publisher>Cambridge: Royal Society of Chemistry</publisher><subject>Acceptor materials ; Charge transfer ; Electric charge ; Electric fields ; Energy conversion efficiency ; Fullerenes ; Heterojunctions ; Photovoltaic cells ; Photovoltaics ; Polymers</subject><ispartof>Journal of materials chemistry. A, Materials for energy and sustainability, 2023-12, Vol.11 (48), p.26499-2657</ispartof><rights>Copyright Royal Society of Chemistry 2023</rights><lds50>peer_reviewed</lds50><woscitedreferencessubscribed>false</woscitedreferencessubscribed><citedby>FETCH-LOGICAL-c281t-dc6fb469355c1673096e31d0e110219ac736ffde98e1be3470d1ee45c9183d793</citedby><cites>FETCH-LOGICAL-c281t-dc6fb469355c1673096e31d0e110219ac736ffde98e1be3470d1ee45c9183d793</cites><orcidid>0000-0003-1590-2640 ; 0000-0003-2493-2817</orcidid></display><links><openurl>$$Topenurl_article</openurl><openurlfulltext>$$Topenurlfull_article</openurlfulltext><thumbnail>$$Tsyndetics_thumb_exl</thumbnail><link.rule.ids>314,776,780,27903,27904</link.rule.ids></links><search><creatorcontrib>Nakano, Kyohei</creatorcontrib><creatorcontrib>Kaji, Yumiko</creatorcontrib><creatorcontrib>Tajima, Keisuke</creatorcontrib><title>Origin of electric field-dependent charge generation in organic photovoltaics with planar and bulk heterojunctions</title><title>Journal of materials chemistry. A, Materials for energy and sustainability</title><description>In organic photovoltaics (OPVs), electric field-dependent charge generation often degrades the fill factor and power conversion efficiency, but its origin remains unclear. This work evaluates the electric field dependence for various non-fullerenes, fullerenes, and electron-donating polymers in OPVs with bulk heterojunction (BHJ) and planar heterojunction (PHJ) structures. We found that the electric field dependence in the charge generation process is more obvious in PHJ than in BHJ structures, even when the same electron donor and acceptor material are used. The insufficient energy difference between singlet excited and charge transfer states primarily causes the electric field-dependent charge generation. In addition, the relative molecular orientation between the donor and acceptor molecules at the interfaces could also be an essential factor determining the charge generation. The results suggest that the end-on orientation of the acceptor molecules to the donor domain is advantageous for efficient field-independent charge generation.
The electric field dependence in the charge generation process of organic solar cells in planar heterojunction and bulk heterojunction structures is related to the energetics and molecular orientation at the donor/acceptor interfaces.</description><subject>Acceptor materials</subject><subject>Charge transfer</subject><subject>Electric charge</subject><subject>Electric fields</subject><subject>Energy conversion efficiency</subject><subject>Fullerenes</subject><subject>Heterojunctions</subject><subject>Photovoltaic cells</subject><subject>Photovoltaics</subject><subject>Polymers</subject><issn>2050-7488</issn><issn>2050-7496</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2023</creationdate><recordtype>article</recordtype><recordid>eNpFkMFLwzAUh4MoOOYu3oWAN6GaNG3aHMd0ThjsMs8lS17bzJrUJFX87-2czHd57_D93uN9CF1Tck8JEw-aRUl4yfL2DE1SkpOkyAQ_P81leYlmIezJWCUhXIgJ8htvGmOxqzF0oKI3CtcGOp1o6MFqsBGrVvoGcAMWvIzGWXwI-EbaEe5bF92n66I0KuAvE1vcd9JKj6XVeDd0b7iFCN7tB6sO4XCFLmrZBZj99Sl6XT5tF6tkvXl-WczXiUpLGhOteL3LuGB5rigvGBEcGNUEKCUpFVIVjNe1BlEC3QHLCqIpQJYrQUumC8Gm6Pa4t_fuY4AQq70bvB1PVqkY388ozchI3R0p5V0IHuqq9-Zd-u-KkuqgtXpk2_mv1tUI3xxhH9SJ-9fOfgCx8XW8</recordid><startdate>20231212</startdate><enddate>20231212</enddate><creator>Nakano, Kyohei</creator><creator>Kaji, Yumiko</creator><creator>Tajima, Keisuke</creator><general>Royal Society of Chemistry</general><scope>AAYXX</scope><scope>CITATION</scope><scope>7SP</scope><scope>7SR</scope><scope>7ST</scope><scope>7U5</scope><scope>8BQ</scope><scope>8FD</scope><scope>C1K</scope><scope>JG9</scope><scope>L7M</scope><scope>SOI</scope><orcidid>https://orcid.org/0000-0003-1590-2640</orcidid><orcidid>https://orcid.org/0000-0003-2493-2817</orcidid></search><sort><creationdate>20231212</creationdate><title>Origin of electric field-dependent charge generation in organic photovoltaics with planar and bulk heterojunctions</title><author>Nakano, Kyohei ; Kaji, Yumiko ; Tajima, Keisuke</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-LOGICAL-c281t-dc6fb469355c1673096e31d0e110219ac736ffde98e1be3470d1ee45c9183d793</frbrgroupid><rsrctype>articles</rsrctype><prefilter>articles</prefilter><language>eng</language><creationdate>2023</creationdate><topic>Acceptor materials</topic><topic>Charge transfer</topic><topic>Electric charge</topic><topic>Electric fields</topic><topic>Energy conversion efficiency</topic><topic>Fullerenes</topic><topic>Heterojunctions</topic><topic>Photovoltaic cells</topic><topic>Photovoltaics</topic><topic>Polymers</topic><toplevel>peer_reviewed</toplevel><toplevel>online_resources</toplevel><creatorcontrib>Nakano, Kyohei</creatorcontrib><creatorcontrib>Kaji, Yumiko</creatorcontrib><creatorcontrib>Tajima, Keisuke</creatorcontrib><collection>CrossRef</collection><collection>Electronics & Communications Abstracts</collection><collection>Engineered Materials Abstracts</collection><collection>Environment Abstracts</collection><collection>Solid State and Superconductivity Abstracts</collection><collection>METADEX</collection><collection>Technology Research Database</collection><collection>Environmental Sciences and Pollution Management</collection><collection>Materials Research Database</collection><collection>Advanced Technologies Database with Aerospace</collection><collection>Environment Abstracts</collection><jtitle>Journal of materials chemistry. A, Materials for energy and sustainability</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>Nakano, Kyohei</au><au>Kaji, Yumiko</au><au>Tajima, Keisuke</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Origin of electric field-dependent charge generation in organic photovoltaics with planar and bulk heterojunctions</atitle><jtitle>Journal of materials chemistry. A, Materials for energy and sustainability</jtitle><date>2023-12-12</date><risdate>2023</risdate><volume>11</volume><issue>48</issue><spage>26499</spage><epage>2657</epage><pages>26499-2657</pages><issn>2050-7488</issn><eissn>2050-7496</eissn><abstract>In organic photovoltaics (OPVs), electric field-dependent charge generation often degrades the fill factor and power conversion efficiency, but its origin remains unclear. This work evaluates the electric field dependence for various non-fullerenes, fullerenes, and electron-donating polymers in OPVs with bulk heterojunction (BHJ) and planar heterojunction (PHJ) structures. We found that the electric field dependence in the charge generation process is more obvious in PHJ than in BHJ structures, even when the same electron donor and acceptor material are used. The insufficient energy difference between singlet excited and charge transfer states primarily causes the electric field-dependent charge generation. In addition, the relative molecular orientation between the donor and acceptor molecules at the interfaces could also be an essential factor determining the charge generation. The results suggest that the end-on orientation of the acceptor molecules to the donor domain is advantageous for efficient field-independent charge generation.
The electric field dependence in the charge generation process of organic solar cells in planar heterojunction and bulk heterojunction structures is related to the energetics and molecular orientation at the donor/acceptor interfaces.</abstract><cop>Cambridge</cop><pub>Royal Society of Chemistry</pub><doi>10.1039/d3ta06835h</doi><tpages>9</tpages><orcidid>https://orcid.org/0000-0003-1590-2640</orcidid><orcidid>https://orcid.org/0000-0003-2493-2817</orcidid></addata></record> |
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source | Royal Society of Chemistry:Jisc Collections:Royal Society of Chemistry Read and Publish 2022-2024 (reading list) |
subjects | Acceptor materials Charge transfer Electric charge Electric fields Energy conversion efficiency Fullerenes Heterojunctions Photovoltaic cells Photovoltaics Polymers |
title | Origin of electric field-dependent charge generation in organic photovoltaics with planar and bulk heterojunctions |
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