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Highly-transparent carrier-selective front contacts open a pathway towards entirely dopant free Si solar cells. Hole selective a-Si:H/MoOx/ITO front contact stacks were already successfully applied in such novel devices. However, for optimum device performance, further improvements are required: We evaluate the use of the high-work-function material WOX as a replacement for MoOx in an attempt to reduce optical absorption losses. In addition, we investigate the use of thin hydrogenated SiOX instead of a-Si:H, and the impact of the residual pressure for MoOx evaporation.
", "funding": [ { "award": { "acronym": "COLIBRI", "id": "00k4n6c32::706744", "identifiers": [ { "identifier": "https://cordis.europa.eu/projects/706744", "scheme": "url" } ], "number": "706744", "program": "H2020", "title": { "en": "Carrier-selective contacts for silicon photovoltaics based on broadband-transparent oxides" } }, "funder": { "id": "00k4n6c32", "name": "European Commission" } }, { "award": { "acronym": "DISC", "id": "00k4n6c32::727529", "identifiers": [ { "identifier": "https://cordis.europa.eu/projects/727529", "scheme": "url" } ], "number": "727529", "program": "H2020", "title": { "en": "Double side contacted cells with innovative carrier-selective contacts" } }, "funder": { "id": "00k4n6c32", "name": "European Commission" } } ], "publication_date": "2017-12-05", "publisher": "Zenodo", "resource_type": { "id": "publication-conferencepaper", "title": { "de": "Konferenzbeitrag", "en": "Conference paper" } }, "rights": [ { "description": { "en": "The Creative Commons Attribution license allows re-distribution and re-use of a licensed work on the condition that the creator is appropriately credited." }, "icon": "cc-by-icon", "id": "cc-by-4.0", "props": { "scheme": "spdx", "url": "https://creativecommons.org/licenses/by/4.0/legalcode" }, "title": { "en": "Creative Commons Attribution 4.0 International" } } ], "title": "MoOX and WOX based hole-selective contacts for wafer-based Si solar cells" }, "parent": { "access": { "owned_by": { "user": 39363 } }, "communities": { "default": "e65b5ec2-2b62-4f13-a03d-534e04c4de4b", "entries": [ { "access": { "member_policy": "open", "members_visibility": "public", "record_policy": "open", "review_policy": "open", "visibility": "public" }, "children": { "allow": false }, "created": "2017-11-03T14:12:00.996795+00:00", "custom_fields": {}, "deletion_status": { "is_deleted": false, "status": "P" }, "id": "e65b5ec2-2b62-4f13-a03d-534e04c4de4b", "links": {}, "metadata": { "curation_policy": "The DISC community aims to archive the project's output. Only DISC consortium members can upload to this collection.
\r\n", "page": "DISC - Double Side Contacted Cells with innovative carrier-selective contacts is a EU H2020 project. We are researching a way to fully exploit the potential of silicon to its maximum through the use of carrier selective junctions. This will allow the extraction of light generated charge carriers without recombination. Such contacts allow simple device architecture – non patterned double-side contacted solar cells, which can be fabricated by upgrading existing production lines.
\r\n\r\nDISC - Double Side Contacted Cells with innovative carrier-selective contacts is a EU H2020 project.
\r\n\r\nDISC is researching a way to fully exploit the potential of silicon to its maximum through the use of carrier selective junctions. This will allow the extraction of light generated charge carriers without recombination. Such contacts allow simple device architecture – non patterned double-side contacted solar cells, which can be fabricated by upgrading existing production lines.
\r\n\r\nThe DISC device architecture enables reduction of non-abundant material consumption, enhancement of the energy yield, and a modern module design ensuring outstanding durability. In such a way DISC will provide the key elements for achieving very low levelized costs of electricity in Europe with potential for further reduction, making solar one of the cheapest electricity sources.
\r\n\r\nProject acronym: DISC
\r\n\r\nProject title: Double Side Contacted Cells with innovative carrier-selective contacts
\r\n\r\nFunding: European Union (EU) Horizon 2020 research and innovation programme
\r\n\r\nGrant agreement number: 727529
\r\n\r\nDuration: 01/10/2016 to 30/09/2019
\r\n\r\nWebsite: http://disc-project-h2020.eu/
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\nThe community is managed by CERN on behalf of the European Commission.
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", "description": "Open repository for EU-funded research outputs from Horizon Europe, Euratom and earlier Framework Programmes.", "organizations": [ { "id": "00k4n6c32" } ], "page": "The EU Open Research Repository is a Zenodo-community dedicated to fostering open science and enhancing the visibility and accessibility of research outputs funded by the European Union. The community is managed by CERN on behalf of the European Commission.
\nThe mission of the repository is to support the implementation of the EU's open science policy, providing a trusted and comprehensive space for researchers to share their research outputs such as data, software, reports, presentations, posters and more. The EU Open Research Repository simplifies the process of complying with open science requirements, ensuring that research outputs from Horizon Europe, Euratom, and earlier Framework Programmes are freely accessible, thereby accelerating scientific discovery and innovation.
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