[{"publication":"Materials and Corrosion","citation":{"mla":"Prüßner, Tim, et al. “Atmospheric Corrosion Protection of LPBF Manufactured AlSi10Mg by Combining SiO                    <i>x</i>                    ‐CVD and PDMS Grafting.” <i>Materials and Corrosion</i>, maco. 70163, Wiley, 2026, doi:<a href=\"https://doi.org/10.1002/maco.70163\">10.1002/maco.70163</a>.","ama":"Prüßner T, Hoyer K-P, Buitkamp N, Grundmeier G. Atmospheric Corrosion Protection of LPBF Manufactured AlSi10Mg by Combining SiO                    <i>x</i>                    ‐CVD and PDMS Grafting. <i>Materials and Corrosion</i>. Published online 2026. doi:<a href=\"https://doi.org/10.1002/maco.70163\">10.1002/maco.70163</a>","bibtex":"@article{Prüßner_Hoyer_Buitkamp_Grundmeier_2026, title={Atmospheric Corrosion Protection of LPBF Manufactured AlSi10Mg by Combining SiO                    <i>x</i>                    ‐CVD and PDMS Grafting}, DOI={<a href=\"https://doi.org/10.1002/maco.70163\">10.1002/maco.70163</a>}, number={maco. 70163}, journal={Materials and Corrosion}, publisher={Wiley}, author={Prüßner, Tim and Hoyer, Kay-Peter and Buitkamp, Nadine and Grundmeier, Guido}, year={2026} }","apa":"Prüßner, T., Hoyer, K.-P., Buitkamp, N., &#38; Grundmeier, G. (2026). Atmospheric Corrosion Protection of LPBF Manufactured AlSi10Mg by Combining SiO                    <i>x</i>                    ‐CVD and PDMS Grafting. <i>Materials and Corrosion</i>, Article maco. 70163. <a href=\"https://doi.org/10.1002/maco.70163\">https://doi.org/10.1002/maco.70163</a>","ieee":"T. Prüßner, K.-P. Hoyer, N. Buitkamp, and G. Grundmeier, “Atmospheric Corrosion Protection of LPBF Manufactured AlSi10Mg by Combining SiO                    <i>x</i>                    ‐CVD and PDMS Grafting,” <i>Materials and Corrosion</i>, Art. no. maco. 70163, 2026, doi: <a href=\"https://doi.org/10.1002/maco.70163\">10.1002/maco.70163</a>.","chicago":"Prüßner, Tim, Kay-Peter Hoyer, Nadine Buitkamp, and Guido Grundmeier. “Atmospheric Corrosion Protection of LPBF Manufactured AlSi10Mg by Combining SiO                    <i>x</i>                    ‐CVD and PDMS Grafting.” <i>Materials and Corrosion</i>, 2026. <a href=\"https://doi.org/10.1002/maco.70163\">https://doi.org/10.1002/maco.70163</a>.","short":"T. Prüßner, K.-P. Hoyer, N. Buitkamp, G. Grundmeier, Materials and Corrosion (2026)."},"abstract":[{"lang":"eng","text":"<jats:title>ABSTRACT</jats:title>\r\n                  <jats:p>\r\n                    Additive manufacturing by laser powder bed fusion enables complex AlSi10Mg components but produces a heterogeneous microstructure prone to localized corrosion. In this study, hydrophobic polydimethylsiloxane (PDMS) ultrathin films, with and without an SiO\r\n                    <jats:italic>ₓ</jats:italic>\r\n                    interlayer attached by chemical vapor deposition (CVD), were applied for corrosion mitigation. Surface modifications were characterized by X‐ray photoelectron spectroscopy (XPS), polarization modulation–infrared reflection–absorption spectroscopy (PM‐IRRAS) and water contact angle (WCA) measurements. Electrochemical behavior was evaluated by electrochemical impedance spectroscopy (EIS), linear sweep voltammetry (LSV), and chronoamperometry by a droplet‐cell approach. Atmospheric corrosion processes simulating marine corrosion were monitored by optical microscopy. Spectroscopic analyses confirm successful PDMS attachment. Electrochemical measurements reveal reduced corrosion current densities by one magnitude, suppressed pitting activity, and anodic shifts of the pitting potential. The SiO\r\n                    <jats:italic>ₓ</jats:italic>\r\n                    ‐CVD + PDMS bilayer exhibits the highest resistance to atmospheric corrosion.\r\n                  </jats:p>"}],"quality_controlled":"1","date_created":"2026-06-10T08:07:28Z","type":"journal_article","department":[{"_id":"9"},{"_id":"158"}],"title":"Atmospheric Corrosion Protection of LPBF Manufactured AlSi10Mg by Combining SiO                    <i>x</i>                    ‐CVD and PDMS Grafting","year":"2026","status":"public","author":[{"full_name":"Prüßner, Tim","first_name":"Tim","last_name":"Prüßner"},{"id":"48411","full_name":"Hoyer, Kay-Peter","first_name":"Kay-Peter","last_name":"Hoyer"},{"full_name":"Buitkamp, Nadine","first_name":"Nadine","last_name":"Buitkamp","id":"1449"},{"full_name":"Grundmeier, Guido","last_name":"Grundmeier","first_name":"Guido","id":"194"}],"publication_identifier":{"issn":["0947-5117","1521-4176"]},"date_updated":"2026-06-10T08:08:27Z","publication_status":"published","article_number":"maco.70163","publisher":"Wiley","_id":"65823","language":[{"iso":"eng"}],"doi":"10.1002/maco.70163","user_id":"48411"},{"volume":73,"user_id":"48864","_id":"29806","publisher":"Wiley","page":"1034","status":"public","citation":{"ieee":"J. Huang <i>et al.</i>, “Influence of hydrogel coatings on corrosion and fatigue of iron in simulated body fluid,” <i>Materials and Corrosion</i>, vol. 73, p. 1034, 2022, doi: <a href=\"https://doi.org/10.1002/maco.202112841\">10.1002/maco.202112841</a>.","apa":"Huang, J., Voigt, M., Wackenrohr, S., Ebbert, C., Keller, A., Maier, H. J., &#38; Grundmeier, G. (2022). Influence of hydrogel coatings on corrosion and fatigue of iron in simulated body fluid. <i>Materials and Corrosion</i>, <i>73</i>, 1034. <a href=\"https://doi.org/10.1002/maco.202112841\">https://doi.org/10.1002/maco.202112841</a>","mla":"Huang, Jingyuan, et al. “Influence of Hydrogel Coatings on Corrosion and Fatigue of Iron in Simulated Body Fluid.” <i>Materials and Corrosion</i>, vol. 73, Wiley, 2022, p. 1034, doi:<a href=\"https://doi.org/10.1002/maco.202112841\">10.1002/maco.202112841</a>.","bibtex":"@article{Huang_Voigt_Wackenrohr_Ebbert_Keller_Maier_Grundmeier_2022, title={Influence of hydrogel coatings on corrosion and fatigue of iron in simulated body fluid}, volume={73}, DOI={<a href=\"https://doi.org/10.1002/maco.202112841\">10.1002/maco.202112841</a>}, journal={Materials and Corrosion}, publisher={Wiley}, author={Huang, Jingyuan and Voigt, Markus and Wackenrohr, Steffen and Ebbert, Christoph and Keller, Adrian and Maier, Hans Jürgen and Grundmeier, Guido}, year={2022}, pages={1034} }","ama":"Huang J, Voigt M, Wackenrohr S, et al. Influence of hydrogel coatings on corrosion and fatigue of iron in simulated body fluid. <i>Materials and Corrosion</i>. 2022;73:1034. doi:<a href=\"https://doi.org/10.1002/maco.202112841\">10.1002/maco.202112841</a>","short":"J. Huang, M. Voigt, S. Wackenrohr, C. Ebbert, A. Keller, H.J. Maier, G. Grundmeier, Materials and Corrosion 73 (2022) 1034.","chicago":"Huang, Jingyuan, Markus Voigt, Steffen Wackenrohr, Christoph Ebbert, Adrian Keller, Hans Jürgen Maier, and Guido Grundmeier. “Influence of Hydrogel Coatings on Corrosion and Fatigue of Iron in Simulated Body Fluid.” <i>Materials and Corrosion</i> 73 (2022): 1034. <a href=\"https://doi.org/10.1002/maco.202112841\">https://doi.org/10.1002/maco.202112841</a>."},"doi":"10.1002/maco.202112841","language":[{"iso":"eng"}],"intvolume":"        73","date_updated":"2022-07-05T09:17:29Z","publication_status":"published","author":[{"first_name":"Jingyuan","last_name":"Huang","full_name":"Huang, Jingyuan"},{"last_name":"Voigt","first_name":"Markus","full_name":"Voigt, Markus","id":"15182"},{"full_name":"Wackenrohr, Steffen","last_name":"Wackenrohr","first_name":"Steffen"},{"id":"7266","full_name":"Ebbert, Christoph","last_name":"Ebbert","first_name":"Christoph"},{"last_name":"Keller","first_name":"Adrian","orcid":"0000-0001-7139-3110","full_name":"Keller, Adrian","id":"48864"},{"full_name":"Maier, Hans Jürgen","first_name":"Hans Jürgen","last_name":"Maier"},{"first_name":"Guido","last_name":"Grundmeier","full_name":"Grundmeier, Guido","id":"194"}],"publication_identifier":{"issn":["0947-5117","1521-4176"]},"year":"2022","title":"Influence of hydrogel coatings on corrosion and fatigue of iron in simulated body fluid","department":[{"_id":"302"}],"keyword":["Materials Chemistry","Metals and Alloys","Surfaces","Coatings and Films","Mechanical Engineering","Mechanics of Materials","Environmental Chemistry","Materials Chemistry","Metals and Alloys","Surfaces","Coatings and Films","Mechanical Engineering","Mechanics of Materials","Environmental Chemistry","Materials Chemistry","Metals and Alloys","Surfaces","Coatings and Films","Mechanical Engineering","Mechanics of Materials","Environmental Chemistry"],"type":"journal_article","date_created":"2022-02-11T07:52:48Z","publication":"Materials and Corrosion"},{"publication_identifier":{"issn":["0947-5117"]},"author":[{"full_name":"Wiesener, Markus","first_name":"Markus","last_name":"Wiesener"},{"first_name":"K.","last_name":"Peters","full_name":"Peters, K."},{"full_name":"Taube, Alexander","first_name":"Alexander","last_name":"Taube"},{"id":"48864","orcid":"0000-0001-7139-3110","first_name":"Adrian","last_name":"Keller","full_name":"Keller, Adrian"},{"id":"48411","last_name":"Hoyer","first_name":"Kay-Peter","full_name":"Hoyer, Kay-Peter"},{"last_name":"Niendorf","first_name":"Thomas","full_name":"Niendorf, Thomas"},{"full_name":"Grundmeier, Guido","first_name":"Guido","last_name":"Grundmeier","id":"194"}],"status":"public","year":"2017","title":"Corrosion properties of bioresorbable FeMn-Ag alloys prepared by selective laser melting","date_updated":"2022-01-06T06:56:07Z","publication_status":"published","_id":"24109","language":[{"iso":"eng"}],"page":"1028-1036","doi":"10.1002/maco.201709478","user_id":"48411","citation":{"mla":"Wiesener, Markus, et al. “Corrosion Properties of Bioresorbable FeMn-Ag Alloys Prepared by Selective Laser Melting.” <i>Materials and Corrosion</i>, 2017, pp. 1028–36, doi:<a href=\"https://doi.org/10.1002/maco.201709478\">10.1002/maco.201709478</a>.","ama":"Wiesener M, Peters K, Taube A, et al. Corrosion properties of bioresorbable FeMn-Ag alloys prepared by selective laser melting. <i>Materials and Corrosion</i>. Published online 2017:1028-1036. doi:<a href=\"https://doi.org/10.1002/maco.201709478\">10.1002/maco.201709478</a>","bibtex":"@article{Wiesener_Peters_Taube_Keller_Hoyer_Niendorf_Grundmeier_2017, title={Corrosion properties of bioresorbable FeMn-Ag alloys prepared by selective laser melting}, DOI={<a href=\"https://doi.org/10.1002/maco.201709478\">10.1002/maco.201709478</a>}, journal={Materials and Corrosion}, author={Wiesener, Markus and Peters, K. and Taube, Alexander and Keller, Adrian and Hoyer, Kay-Peter and Niendorf, Thomas and Grundmeier, Guido}, year={2017}, pages={1028–1036} }","apa":"Wiesener, M., Peters, K., Taube, A., Keller, A., Hoyer, K.-P., Niendorf, T., &#38; Grundmeier, G. (2017). Corrosion properties of bioresorbable FeMn-Ag alloys prepared by selective laser melting. <i>Materials and Corrosion</i>, 1028–1036. <a href=\"https://doi.org/10.1002/maco.201709478\">https://doi.org/10.1002/maco.201709478</a>","ieee":"M. Wiesener <i>et al.</i>, “Corrosion properties of bioresorbable FeMn-Ag alloys prepared by selective laser melting,” <i>Materials and Corrosion</i>, pp. 1028–1036, 2017, doi: <a href=\"https://doi.org/10.1002/maco.201709478\">10.1002/maco.201709478</a>.","chicago":"Wiesener, Markus, K. Peters, Alexander Taube, Adrian Keller, Kay-Peter Hoyer, Thomas Niendorf, and Guido Grundmeier. “Corrosion Properties of Bioresorbable FeMn-Ag Alloys Prepared by Selective Laser Melting.” <i>Materials and Corrosion</i>, 2017, 1028–36. <a href=\"https://doi.org/10.1002/maco.201709478\">https://doi.org/10.1002/maco.201709478</a>.","short":"M. Wiesener, K. Peters, A. Taube, A. Keller, K.-P. Hoyer, T. Niendorf, G. Grundmeier, Materials and Corrosion (2017) 1028–1036."},"publication":"Materials and Corrosion","date_created":"2021-09-10T07:18:41Z","department":[{"_id":"9"},{"_id":"158"},{"_id":"302"}],"type":"journal_article"},{"status":"public","year":"2017","title":"Scanning Kelvin probe blister studies of the delamination of epoxy films on organosilane modified ZnMgAl alloy coated steel","publication_identifier":{"issn":["0947-5117"]},"author":[{"last_name":"Grothe","first_name":"R.","full_name":"Grothe, R."},{"last_name":"Wiesing","first_name":"M.","full_name":"Wiesing, M."},{"last_name":"Giner","first_name":"I.","full_name":"Giner, I."},{"id":"32378","full_name":"Meinderink, Dennis","orcid":"0000-0002-2755-6514","last_name":"Meinderink","first_name":"Dennis"},{"first_name":"Guido","last_name":"Grundmeier","full_name":"Grundmeier, Guido","id":"194"}],"publication_status":"published","date_updated":"2022-01-06T06:55:38Z","page":"1314-1320","_id":"22694","language":[{"iso":"eng"}],"user_id":"32378","doi":"10.1002/maco.201709462","publication":"Materials and Corrosion","citation":{"bibtex":"@article{Grothe_Wiesing_Giner_Meinderink_Grundmeier_2017, title={Scanning Kelvin probe blister studies of the delamination of epoxy films on organosilane modified ZnMgAl alloy coated steel}, DOI={<a href=\"https://doi.org/10.1002/maco.201709462\">10.1002/maco.201709462</a>}, journal={Materials and Corrosion}, author={Grothe, R. and Wiesing, M. and Giner, I. and Meinderink, Dennis and Grundmeier, Guido}, year={2017}, pages={1314–1320} }","ama":"Grothe R, Wiesing M, Giner I, Meinderink D, Grundmeier G. Scanning Kelvin probe blister studies of the delamination of epoxy films on organosilane modified ZnMgAl alloy coated steel. <i>Materials and Corrosion</i>. 2017:1314-1320. doi:<a href=\"https://doi.org/10.1002/maco.201709462\">10.1002/maco.201709462</a>","mla":"Grothe, R., et al. “Scanning Kelvin Probe Blister Studies of the Delamination of Epoxy Films on Organosilane Modified ZnMgAl Alloy Coated Steel.” <i>Materials and Corrosion</i>, 2017, pp. 1314–20, doi:<a href=\"https://doi.org/10.1002/maco.201709462\">10.1002/maco.201709462</a>.","chicago":"Grothe, R., M. Wiesing, I. Giner, Dennis Meinderink, and Guido Grundmeier. “Scanning Kelvin Probe Blister Studies of the Delamination of Epoxy Films on Organosilane Modified ZnMgAl Alloy Coated Steel.” <i>Materials and Corrosion</i>, 2017, 1314–20. <a href=\"https://doi.org/10.1002/maco.201709462\">https://doi.org/10.1002/maco.201709462</a>.","short":"R. Grothe, M. Wiesing, I. Giner, D. Meinderink, G. Grundmeier, Materials and Corrosion (2017) 1314–1320.","ieee":"R. Grothe, M. Wiesing, I. Giner, D. Meinderink, and G. Grundmeier, “Scanning Kelvin probe blister studies of the delamination of epoxy films on organosilane modified ZnMgAl alloy coated steel,” <i>Materials and Corrosion</i>, pp. 1314–1320, 2017.","apa":"Grothe, R., Wiesing, M., Giner, I., Meinderink, D., &#38; Grundmeier, G. (2017). Scanning Kelvin probe blister studies of the delamination of epoxy films on organosilane modified ZnMgAl alloy coated steel. <i>Materials and Corrosion</i>, 1314–1320. <a href=\"https://doi.org/10.1002/maco.201709462\">https://doi.org/10.1002/maco.201709462</a>"},"date_created":"2021-07-09T12:29:43Z","type":"journal_article","department":[{"_id":"302"}]},{"title":"Corrosive delamination processes of CFRP-aluminum alloy hybrid components","status":"public","year":"2017","publication_identifier":{"issn":["0947-5117"]},"author":[{"full_name":"Bauer, A.","last_name":"Bauer","first_name":"A."},{"id":"194","full_name":"Grundmeier, Guido","first_name":"Guido","last_name":"Grundmeier"},{"full_name":"Steger, H.","last_name":"Steger","first_name":"H."},{"full_name":"Weitl, J.","last_name":"Weitl","first_name":"J."}],"date_updated":"2022-01-06T06:55:42Z","publication_status":"published","page":"98-105","_id":"22842","language":[{"iso":"eng"}],"doi":"10.1002/maco.201709637","user_id":"194","publication":"Materials and Corrosion","citation":{"chicago":"Bauer, A., Guido Grundmeier, H. Steger, and J. Weitl. “Corrosive Delamination Processes of CFRP-Aluminum Alloy Hybrid Components.” <i>Materials and Corrosion</i>, 2017, 98–105. <a href=\"https://doi.org/10.1002/maco.201709637\">https://doi.org/10.1002/maco.201709637</a>.","short":"A. Bauer, G. Grundmeier, H. Steger, J. Weitl, Materials and Corrosion (2017) 98–105.","ieee":"A. Bauer, G. Grundmeier, H. Steger, and J. Weitl, “Corrosive delamination processes of CFRP-aluminum alloy hybrid components,” <i>Materials and Corrosion</i>, pp. 98–105, 2017.","apa":"Bauer, A., Grundmeier, G., Steger, H., &#38; Weitl, J. (2017). Corrosive delamination processes of CFRP-aluminum alloy hybrid components. <i>Materials and Corrosion</i>, 98–105. <a href=\"https://doi.org/10.1002/maco.201709637\">https://doi.org/10.1002/maco.201709637</a>","bibtex":"@article{Bauer_Grundmeier_Steger_Weitl_2017, title={Corrosive delamination processes of CFRP-aluminum alloy hybrid components}, DOI={<a href=\"https://doi.org/10.1002/maco.201709637\">10.1002/maco.201709637</a>}, journal={Materials and Corrosion}, author={Bauer, A. and Grundmeier, Guido and Steger, H. and Weitl, J.}, year={2017}, pages={98–105} }","ama":"Bauer A, Grundmeier G, Steger H, Weitl J. Corrosive delamination processes of CFRP-aluminum alloy hybrid components. <i>Materials and Corrosion</i>. 2017:98-105. doi:<a href=\"https://doi.org/10.1002/maco.201709637\">10.1002/maco.201709637</a>","mla":"Bauer, A., et al. “Corrosive Delamination Processes of CFRP-Aluminum Alloy Hybrid Components.” <i>Materials and Corrosion</i>, 2017, pp. 98–105, doi:<a href=\"https://doi.org/10.1002/maco.201709637\">10.1002/maco.201709637</a>."},"date_created":"2021-07-27T14:15:36Z","type":"journal_article"},{"language":[{"iso":"eng"}],"_id":"22846","page":"1028-1036","user_id":"194","doi":"10.1002/maco.201709478","publication_identifier":{"issn":["0947-5117"]},"author":[{"last_name":"Wiesener","first_name":"M.","full_name":"Wiesener, M."},{"full_name":"Peters, K.","last_name":"Peters","first_name":"K."},{"first_name":"A.","last_name":"Taube","full_name":"Taube, A."},{"last_name":"Keller","first_name":"A.","full_name":"Keller, A."},{"full_name":"Hoyer, K.-P.","last_name":"Hoyer","first_name":"K.-P."},{"full_name":"Niendorf, T.","last_name":"Niendorf","first_name":"T."},{"full_name":"Grundmeier, Guido","last_name":"Grundmeier","first_name":"Guido","id":"194"}],"status":"public","title":"Corrosion properties of bioresorbable FeMn-Ag alloys prepared by selective laser melting","year":"2017","publication_status":"published","date_updated":"2022-01-06T06:55:42Z","date_created":"2021-07-27T14:17:37Z","type":"journal_article","citation":{"ama":"Wiesener M, Peters K, Taube A, et al. Corrosion properties of bioresorbable FeMn-Ag alloys prepared by selective laser melting. <i>Materials and Corrosion</i>. 2017:1028-1036. doi:<a href=\"https://doi.org/10.1002/maco.201709478\">10.1002/maco.201709478</a>","bibtex":"@article{Wiesener_Peters_Taube_Keller_Hoyer_Niendorf_Grundmeier_2017, title={Corrosion properties of bioresorbable FeMn-Ag alloys prepared by selective laser melting}, DOI={<a href=\"https://doi.org/10.1002/maco.201709478\">10.1002/maco.201709478</a>}, journal={Materials and Corrosion}, author={Wiesener, M. and Peters, K. and Taube, A. and Keller, A. and Hoyer, K.-P. and Niendorf, T. and Grundmeier, Guido}, year={2017}, pages={1028–1036} }","mla":"Wiesener, M., et al. “Corrosion Properties of Bioresorbable FeMn-Ag Alloys Prepared by Selective Laser Melting.” <i>Materials and Corrosion</i>, 2017, pp. 1028–36, doi:<a href=\"https://doi.org/10.1002/maco.201709478\">10.1002/maco.201709478</a>.","chicago":"Wiesener, M., K. Peters, A. Taube, A. Keller, K.-P. Hoyer, T. Niendorf, and Guido Grundmeier. “Corrosion Properties of Bioresorbable FeMn-Ag Alloys Prepared by Selective Laser Melting.” <i>Materials and Corrosion</i>, 2017, 1028–36. <a href=\"https://doi.org/10.1002/maco.201709478\">https://doi.org/10.1002/maco.201709478</a>.","short":"M. Wiesener, K. Peters, A. Taube, A. Keller, K.-P. Hoyer, T. Niendorf, G. Grundmeier, Materials and Corrosion (2017) 1028–1036.","apa":"Wiesener, M., Peters, K., Taube, A., Keller, A., Hoyer, K.-P., Niendorf, T., &#38; Grundmeier, G. (2017). Corrosion properties of bioresorbable FeMn-Ag alloys prepared by selective laser melting. <i>Materials and Corrosion</i>, 1028–1036. <a href=\"https://doi.org/10.1002/maco.201709478\">https://doi.org/10.1002/maco.201709478</a>","ieee":"M. Wiesener <i>et al.</i>, “Corrosion properties of bioresorbable FeMn-Ag alloys prepared by selective laser melting,” <i>Materials and Corrosion</i>, pp. 1028–1036, 2017."},"publication":"Materials and Corrosion"},{"volume":68,"user_id":"48411","publisher":"Wiley","_id":"41531","page":"1028-1036","status":"public","citation":{"ama":"Wiesener M, Peters K, Taube A, et al. Corrosion properties of bioresorbable FeMn-Ag alloys prepared by selective laser melting. <i>Materials and Corrosion</i>. 2017;68(10):1028-1036. doi:<a href=\"https://doi.org/10.1002/maco.201709478\">10.1002/maco.201709478</a>","bibtex":"@article{Wiesener_Peters_Taube_Keller_Hoyer_Niendorf_Grundmeier_2017, title={Corrosion properties of bioresorbable FeMn-Ag alloys prepared by selective laser melting}, volume={68}, DOI={<a href=\"https://doi.org/10.1002/maco.201709478\">10.1002/maco.201709478</a>}, number={10}, journal={Materials and Corrosion}, publisher={Wiley}, author={Wiesener, Markus and Peters, K. and Taube, Alexander and Keller, Adrian and Hoyer, Kay-Peter and Niendorf, Thomas and Grundmeier, Guido}, year={2017}, pages={1028–1036} }","mla":"Wiesener, Markus, et al. “Corrosion Properties of Bioresorbable FeMn-Ag Alloys Prepared by Selective Laser Melting.” <i>Materials and Corrosion</i>, vol. 68, no. 10, Wiley, 2017, pp. 1028–36, doi:<a href=\"https://doi.org/10.1002/maco.201709478\">10.1002/maco.201709478</a>.","short":"M. Wiesener, K. Peters, A. Taube, A. Keller, K.-P. Hoyer, T. Niendorf, G. Grundmeier, Materials and Corrosion 68 (2017) 1028–1036.","chicago":"Wiesener, Markus, K. Peters, Alexander Taube, Adrian Keller, Kay-Peter Hoyer, Thomas Niendorf, and Guido Grundmeier. “Corrosion Properties of Bioresorbable FeMn-Ag Alloys Prepared by Selective Laser Melting.” <i>Materials and Corrosion</i> 68, no. 10 (2017): 1028–36. <a href=\"https://doi.org/10.1002/maco.201709478\">https://doi.org/10.1002/maco.201709478</a>.","apa":"Wiesener, M., Peters, K., Taube, A., Keller, A., Hoyer, K.-P., Niendorf, T., &#38; Grundmeier, G. (2017). Corrosion properties of bioresorbable FeMn-Ag alloys prepared by selective laser melting. <i>Materials and Corrosion</i>, <i>68</i>(10), 1028–1036. <a href=\"https://doi.org/10.1002/maco.201709478\">https://doi.org/10.1002/maco.201709478</a>","ieee":"M. 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