Toward three-dimensional hybrid inorganic/organic optoelectronics based on GaN/oCVD-PEDOT structures
Though integrating functional organic materials with semiconductor nanostructures is attractive for 3D chip processing, realizing these hybrids remains a challenge. Here, the authors report an oxidative chemical vapor deposition-based process for designing novel 3D hybrid optoelectronic structures.
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Nature Portfolio
2020
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oai:doaj.org-article:418ca726380048dab4148970fc1b52062021-12-02T19:16:33ZToward three-dimensional hybrid inorganic/organic optoelectronics based on GaN/oCVD-PEDOT structures10.1038/s41467-020-18914-72041-1723https://doaj.org/article/418ca726380048dab4148970fc1b52062020-10-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-18914-7https://doaj.org/toc/2041-1723Though integrating functional organic materials with semiconductor nanostructures is attractive for 3D chip processing, realizing these hybrids remains a challenge. Here, the authors report an oxidative chemical vapor deposition-based process for designing novel 3D hybrid optoelectronic structures.Linus KriegFlorian MeierhoferSascha GornyStefan LeisDaniel SplithZhipeng ZhangHolger von WencksternMarius GrundmannXiaoxue WangJana HartmannChristoph MargenfeldIrene Manglano ClaveroAdrian AvramescuTilman SchimpkeDominik ScholzHans-Jürgen LugauerMartin StrassburgJörgen JungclausSteffen BornemannHendrik SpendeAndreas WaagKaren K. GleasonTobias VossNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-10 (2020) |
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Science Q |
spellingShingle |
Science Q Linus Krieg Florian Meierhofer Sascha Gorny Stefan Leis Daniel Splith Zhipeng Zhang Holger von Wenckstern Marius Grundmann Xiaoxue Wang Jana Hartmann Christoph Margenfeld Irene Manglano Clavero Adrian Avramescu Tilman Schimpke Dominik Scholz Hans-Jürgen Lugauer Martin Strassburg Jörgen Jungclaus Steffen Bornemann Hendrik Spende Andreas Waag Karen K. Gleason Tobias Voss Toward three-dimensional hybrid inorganic/organic optoelectronics based on GaN/oCVD-PEDOT structures |
description |
Though integrating functional organic materials with semiconductor nanostructures is attractive for 3D chip processing, realizing these hybrids remains a challenge. Here, the authors report an oxidative chemical vapor deposition-based process for designing novel 3D hybrid optoelectronic structures. |
format |
article |
author |
Linus Krieg Florian Meierhofer Sascha Gorny Stefan Leis Daniel Splith Zhipeng Zhang Holger von Wenckstern Marius Grundmann Xiaoxue Wang Jana Hartmann Christoph Margenfeld Irene Manglano Clavero Adrian Avramescu Tilman Schimpke Dominik Scholz Hans-Jürgen Lugauer Martin Strassburg Jörgen Jungclaus Steffen Bornemann Hendrik Spende Andreas Waag Karen K. Gleason Tobias Voss |
author_facet |
Linus Krieg Florian Meierhofer Sascha Gorny Stefan Leis Daniel Splith Zhipeng Zhang Holger von Wenckstern Marius Grundmann Xiaoxue Wang Jana Hartmann Christoph Margenfeld Irene Manglano Clavero Adrian Avramescu Tilman Schimpke Dominik Scholz Hans-Jürgen Lugauer Martin Strassburg Jörgen Jungclaus Steffen Bornemann Hendrik Spende Andreas Waag Karen K. Gleason Tobias Voss |
author_sort |
Linus Krieg |
title |
Toward three-dimensional hybrid inorganic/organic optoelectronics based on GaN/oCVD-PEDOT structures |
title_short |
Toward three-dimensional hybrid inorganic/organic optoelectronics based on GaN/oCVD-PEDOT structures |
title_full |
Toward three-dimensional hybrid inorganic/organic optoelectronics based on GaN/oCVD-PEDOT structures |
title_fullStr |
Toward three-dimensional hybrid inorganic/organic optoelectronics based on GaN/oCVD-PEDOT structures |
title_full_unstemmed |
Toward three-dimensional hybrid inorganic/organic optoelectronics based on GaN/oCVD-PEDOT structures |
title_sort |
toward three-dimensional hybrid inorganic/organic optoelectronics based on gan/ocvd-pedot structures |
publisher |
Nature Portfolio |
publishDate |
2020 |
url |
https://doaj.org/article/418ca726380048dab4148970fc1b5206 |
work_keys_str_mv |
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