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Kramer, R. Schweins, K. Huber, Macromolecules 38 (2005) 9783–9793.","ieee":"T. Kramer, R. Schweins, and K. Huber, “Coil Dimensions of Polystyrene Chains in Colloid−Polymer Mixtures at the Protein Limit:  A SANS Study,” <i>Macromolecules</i>, vol. 38, no. 23, pp. 9783–9793, 2005, doi: <a href=\"https://doi.org/10.1021/ma051308j\">10.1021/ma051308j</a>.","apa":"Kramer, T., Schweins, R., &#38; Huber, K. (2005). Coil Dimensions of Polystyrene Chains in Colloid−Polymer Mixtures at the Protein Limit:  A SANS Study. <i>Macromolecules</i>, <i>38</i>(23), 9783–9793. <a href=\"https://doi.org/10.1021/ma051308j\">https://doi.org/10.1021/ma051308j</a>","bibtex":"@article{Kramer_Schweins_Huber_2005, title={Coil Dimensions of Polystyrene Chains in Colloid−Polymer Mixtures at the Protein Limit:  A SANS Study}, volume={38}, DOI={<a href=\"https://doi.org/10.1021/ma051308j\">10.1021/ma051308j</a>}, number={23}, journal={Macromolecules}, publisher={American Chemical Society (ACS)}, author={Kramer, Thomas and Schweins, Ralf and Huber, Klaus}, year={2005}, pages={9783–9793} }","ama":"Kramer T, Schweins R, Huber K. Coil Dimensions of Polystyrene Chains in Colloid−Polymer Mixtures at the Protein Limit:  A SANS Study. <i>Macromolecules</i>. 2005;38(23):9783-9793. doi:<a href=\"https://doi.org/10.1021/ma051308j\">10.1021/ma051308j</a>","mla":"Kramer, Thomas, et al. “Coil Dimensions of Polystyrene Chains in Colloid−Polymer Mixtures at the Protein Limit:  A SANS Study.” <i>Macromolecules</i>, vol. 38, no. 23, American Chemical Society (ACS), 2005, pp. 9783–93, doi:<a href=\"https://doi.org/10.1021/ma051308j\">10.1021/ma051308j</a>."}},{"language":[{"iso":"eng"}],"doi":"10.1557/jmr.2004.0267","author":[{"full_name":"Pannemann, Ch.","last_name":"Pannemann","first_name":"Ch."},{"last_name":"Diekmann","first_name":"T.","full_name":"Diekmann, T."},{"id":"20179","full_name":"Hilleringmann, Ulrich","last_name":"Hilleringmann","first_name":"Ulrich"}],"publication_identifier":{"issn":["0884-2914","2044-5326"]},"year":"2005","title":"Degradation of organic field-effect transistors made of pentacene","intvolume":"        19","publication_status":"published","date_updated":"2023-03-21T10:06:18Z","date_created":"2023-01-25T08:37:47Z","department":[{"_id":"59"}],"type":"journal_article","keyword":["Mechanical Engineering","Mechanics of Materials","Condensed Matter Physics","General Materials Science"],"issue":"7","publication":"Journal of Materials Research","abstract":[{"lang":"eng","text":"<jats:p>This article reports degradation experiments on organic thin film transistors using the small organic molecule pentacene as the semiconducting material. Starting with degradation inert <jats:italic>p</jats:italic>-type silicon wafers as the substrate and SiO<jats:sub>2</jats:sub> as the gate dielectric, we show the influence of temperature and exposure to ambient air on the charge carrier field-effect mobility, on-off-ratio, and threshold-voltage. The devices were found to have unambiguously degraded over 3 orders of magnitude in maximum on-current and charge carrier field-effect mobility, but they still operated after a period of 9 months in ambient air conditions. A thermal treatment was carried out in vacuum conditions and revealed a degradation of the charge carrier field-effect mobility, maximum on-current, and threshold voltage.</jats:p>"}],"_id":"39846","publisher":"Springer Science and Business Media LLC","page":"1999-2002","volume":19,"user_id":"20179","status":"public","citation":{"apa":"Pannemann, Ch., Diekmann, T., &#38; Hilleringmann, U. (2005). Degradation of organic field-effect transistors made of pentacene. <i>Journal of Materials Research</i>, <i>19</i>(7), 1999–2002. <a href=\"https://doi.org/10.1557/jmr.2004.0267\">https://doi.org/10.1557/jmr.2004.0267</a>","ieee":"Ch. Pannemann, T. Diekmann, and U. Hilleringmann, “Degradation of organic field-effect transistors made of pentacene,” <i>Journal of Materials Research</i>, vol. 19, no. 7, pp. 1999–2002, 2005, doi: <a href=\"https://doi.org/10.1557/jmr.2004.0267\">10.1557/jmr.2004.0267</a>.","short":"Ch. Pannemann, T. Diekmann, U. Hilleringmann, Journal of Materials Research 19 (2005) 1999–2002.","chicago":"Pannemann, Ch., T. 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Degradation of organic field-effect transistors made of pentacene. <i>Journal of Materials Research</i>. 2005;19(7):1999-2002. doi:<a href=\"https://doi.org/10.1557/jmr.2004.0267\">10.1557/jmr.2004.0267</a>","bibtex":"@article{Pannemann_Diekmann_Hilleringmann_2005, title={Degradation of organic field-effect transistors made of pentacene}, volume={19}, DOI={<a href=\"https://doi.org/10.1557/jmr.2004.0267\">10.1557/jmr.2004.0267</a>}, number={7}, journal={Journal of Materials Research}, publisher={Springer Science and Business Media LLC}, author={Pannemann, Ch. and Diekmann, T. and Hilleringmann, Ulrich}, year={2005}, pages={1999–2002} }"}},{"language":[{"iso":"eng"}],"doi":"10.1557/jmr.2004.0267","author":[{"last_name":"Pannemann","first_name":"Ch.","full_name":"Pannemann, Ch."},{"first_name":"T.","last_name":"Diekmann","full_name":"Diekmann, T."},{"id":"20179","full_name":"Hilleringmann, Ulrich","last_name":"Hilleringmann","first_name":"Ulrich"}],"publication_identifier":{"issn":["0884-2914","2044-5326"]},"title":"Degradation of organic field-effect transistors made of pentacene","year":"2005","intvolume":"        19","publication_status":"published","date_updated":"2023-03-22T10:38:56Z","date_created":"2023-01-24T09:24:41Z","department":[{"_id":"59"}],"keyword":["Mechanical Engineering","Mechanics of Materials","Condensed Matter Physics","General Materials Science"],"type":"journal_article","issue":"7","publication":"Journal of Materials Research","abstract":[{"lang":"eng","text":"<jats:p>This article reports degradation experiments on organic thin film transistors using the small organic molecule pentacene as the semiconducting material. Starting with degradation inert <jats:italic>p</jats:italic>-type silicon wafers as the substrate and SiO<jats:sub>2</jats:sub> as the gate dielectric, we show the influence of temperature and exposure to ambient air on the charge carrier field-effect mobility, on-off-ratio, and threshold-voltage. The devices were found to have unambiguously degraded over 3 orders of magnitude in maximum on-current and charge carrier field-effect mobility, but they still operated after a period of 9 months in ambient air conditions. A thermal treatment was carried out in vacuum conditions and revealed a degradation of the charge carrier field-effect mobility, maximum on-current, and threshold voltage.</jats:p>"}],"_id":"39349","publisher":"Springer Science and Business Media LLC","page":"1999-2002","volume":19,"user_id":"20179","status":"public","citation":{"ama":"Pannemann Ch, Diekmann T, Hilleringmann U. Degradation of organic field-effect transistors made of pentacene. <i>Journal of Materials Research</i>. 2005;19(7):1999-2002. doi:<a href=\"https://doi.org/10.1557/jmr.2004.0267\">10.1557/jmr.2004.0267</a>","bibtex":"@article{Pannemann_Diekmann_Hilleringmann_2005, title={Degradation of organic field-effect transistors made of pentacene}, volume={19}, DOI={<a href=\"https://doi.org/10.1557/jmr.2004.0267\">10.1557/jmr.2004.0267</a>}, number={7}, journal={Journal of Materials Research}, publisher={Springer Science and Business Media LLC}, author={Pannemann, Ch. and Diekmann, T. and Hilleringmann, Ulrich}, year={2005}, pages={1999–2002} }","mla":"Pannemann, Ch., et al. “Degradation of Organic Field-Effect Transistors Made of Pentacene.” <i>Journal of Materials Research</i>, vol. 19, no. 7, Springer Science and Business Media LLC, 2005, pp. 1999–2002, doi:<a href=\"https://doi.org/10.1557/jmr.2004.0267\">10.1557/jmr.2004.0267</a>.","chicago":"Pannemann, Ch., T. Diekmann, and Ulrich Hilleringmann. “Degradation of Organic Field-Effect Transistors Made of Pentacene.” <i>Journal of Materials Research</i> 19, no. 7 (2005): 1999–2002. <a href=\"https://doi.org/10.1557/jmr.2004.0267\">https://doi.org/10.1557/jmr.2004.0267</a>.","short":"Ch. Pannemann, T. Diekmann, U. Hilleringmann, Journal of Materials Research 19 (2005) 1999–2002.","apa":"Pannemann, Ch., Diekmann, T., &#38; Hilleringmann, U. (2005). Degradation of organic field-effect transistors made of pentacene. <i>Journal of Materials Research</i>, <i>19</i>(7), 1999–2002. <a href=\"https://doi.org/10.1557/jmr.2004.0267\">https://doi.org/10.1557/jmr.2004.0267</a>","ieee":"Ch. Pannemann, T. Diekmann, and U. Hilleringmann, “Degradation of organic field-effect transistors made of pentacene,” <i>Journal of Materials Research</i>, vol. 19, no. 7, pp. 1999–2002, 2005, doi: <a href=\"https://doi.org/10.1557/jmr.2004.0267\">10.1557/jmr.2004.0267</a>."}},{"citation":{"bibtex":"@article{Cormier_Schmidt_Callaghan_2004, title={Director reorientation of a side-chain liquid crystalline polymer under extensional flow}, volume={48}, DOI={<a href=\"https://doi.org/10.1122/1.1753278\">10.1122/1.1753278</a>}, number={4}, journal={Journal of Rheology}, publisher={Society of Rheology}, author={Cormier, Ryan J. and Schmidt, Claudia and Callaghan, Paul T.}, year={2004}, pages={881–894} }","ama":"Cormier RJ, Schmidt C, Callaghan PT. 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Hummelen, Synthetic Metals 141 (2003) 271–275.","chicago":"Röder, T, Heinz-Siegfried Kitzerow, and J.C Hummelen. “Morphology and Fluorescence Quenching in Photovoltaic Samples Containing Fullerene and Poly(p-Phenylene-Vinylene) Derivatives.” <i>Synthetic Metals</i> 141, no. 3 (2003): 271–75. <a href=\"https://doi.org/10.1016/s0379-6779(03)00412-0\">https://doi.org/10.1016/s0379-6779(03)00412-0</a>.","mla":"Röder, T., et al. “Morphology and Fluorescence Quenching in Photovoltaic Samples Containing Fullerene and Poly(p-Phenylene-Vinylene) Derivatives.” <i>Synthetic Metals</i>, vol. 141, no. 3, Elsevier BV, 2003, pp. 271–75, doi:<a href=\"https://doi.org/10.1016/s0379-6779(03)00412-0\">10.1016/s0379-6779(03)00412-0</a>.","bibtex":"@article{Röder_Kitzerow_Hummelen_2003, title={Morphology and fluorescence quenching in photovoltaic samples containing fullerene and poly(p-phenylene-vinylene) derivatives}, volume={141}, DOI={<a href=\"https://doi.org/10.1016/s0379-6779(03)00412-0\">10.1016/s0379-6779(03)00412-0</a>}, number={3}, journal={Synthetic Metals}, publisher={Elsevier BV}, author={Röder, T and Kitzerow, Heinz-Siegfried and Hummelen, J.C}, year={2003}, pages={271–275} }","ama":"Röder T, Kitzerow H-S, Hummelen JC. Morphology and fluorescence quenching in photovoltaic samples containing fullerene and poly(p-phenylene-vinylene) derivatives. <i>Synthetic Metals</i>. 2003;141(3):271-275. doi:<a href=\"https://doi.org/10.1016/s0379-6779(03)00412-0\">10.1016/s0379-6779(03)00412-0</a>"},"doi":"10.1016/s0379-6779(03)00412-0","language":[{"iso":"eng"}],"intvolume":"       141","date_updated":"2023-01-25T12:09:38Z","publication_status":"published","publication_identifier":{"issn":["0379-6779"]},"author":[{"first_name":"T","last_name":"Röder","full_name":"Röder, T"},{"full_name":"Kitzerow, Heinz-Siegfried","first_name":"Heinz-Siegfried","last_name":"Kitzerow","id":"254"},{"last_name":"Hummelen","first_name":"J.C","full_name":"Hummelen, J.C"}],"year":"2003","title":"Morphology and fluorescence quenching in photovoltaic samples containing fullerene and poly(p-phenylene-vinylene) derivatives","department":[{"_id":"313"},{"_id":"638"}],"keyword":["Materials Chemistry","Metals and Alloys","Mechanical Engineering","Mechanics of Materials","Condensed Matter Physics","Electronic","Optical and Magnetic Materials"],"type":"journal_article","date_created":"2023-01-25T12:06:23Z","publication":"Synthetic Metals","issue":"3"}]
