55 Publikationen
2025 | Konferenzbeitrag | FH-PUB-ID: 5602 |

H. G. Ramirez Candia, U. Güth, T. Grothe, and A. Ehrmann, “Optimization of the Spinning Parameters for Wire-Based Electrospinning of Casein–PEO Nanofiber Mats,” vol. 81, no. 1. MDPI, Basel Switzerland, 2025.
HSBI-PUB
| Dateien verfügbar
| DOI
2025 | Artikel | FH-PUB-ID: 5600 |

B. Brockhagen et al., “Freestanding Flexible Carbon Nanofiber Mats for Energy Storage Applications,” material proceedings, vol. 21, no. 1, p. 1, 2025.
HSBI-PUB
| Dateien verfügbar
| DOI
2024 | Artikel | FH-PUB-ID: 5166 |

N. S. Mpofu et al., “Influence of the PAN:PEO Ratio on the Morphology of Needleless Electrospun Nanofiber Mats Before and After Carbonization,” Fibers, vol. 12, no. 11, 2024.
HSBI-PUB
| Dateien verfügbar
| DOI
2024 | Artikel | FH-PUB-ID: 4370 |

E. Tanzli et al., “Improved cell growth on additively manufactured Ti64 substrates with varying porosity and nanofibrous coating,” Heliyon, vol. 10, no. 3, 2024.
HSBI-PUB
| Dateien verfügbar
| DOI
2023 | Artikel | FH-PUB-ID: 2912 |

G. Erdem, T. Grothe, and A. Ehrmann, “Adhesion of new thermoplastic materials printed on textile fabrics,” Tekstilec, vol. 66, no. 1, pp. 57–63, 2023.
HSBI-PUB
| Dateien verfügbar
| DOI
| Download (ext.)
2022 | Artikel | FH-PUB-ID: 2019 |

L. Bauer et al., “Electrospinning for the Modification of 3D Objects for the Potential Use in Tissue Engineering,” Technologies, vol. 10, no. 3, 2022.
HSBI-PUB
| Dateien verfügbar
| DOI
2022 | Artikel | FH-PUB-ID: 2039 |

J. L. Storck et al., “Comparative Study of Metal Substrates for Improved Carbonization of Electrospun PAN Nanofibers,” Polymers, vol. 14, no. 4, 2022.
HSBI-PUB
| Dateien verfügbar
| DOI
| Download (ext.)
2021 | Artikel | FH-PUB-ID: 1581 |

E. Diestelhorst et al., “Necessary Parameters of Vertically Mounted Textile Substrates for Successful Cultivation of Cress for Low-Budget Vertical Farming,” TEKSTILEC, vol. 64, no. 4, pp. 276–285, 2021.
HSBI-PUB
| DOI
| Download (ext.)
2021 | Artikel | FH-PUB-ID: 1294 |

C. Hellert, J. L. Storck, T. Grothe, B. Kaltschmidt, A. Hütten, and A. Ehrmann, “Positioning and Aligning Electrospun PAN Fibers by Conductive and Dielectric Substrate Patterns,” Macromolecular Symposia, vol. 395, no. 1, 2021.
HSBI-PUB
| DOI
| Download (ext.)
2021 | Artikel | FH-PUB-ID: 1607 |

T. Grothe et al., “Optical Index Matching, Flexible Electrospun Substrates for Seamless Organic Photocapacitive Sensors,” physica status solidi (b), vol. 258, no. 6, 2021.
HSBI-PUB
| DOI
| Download (ext.)
2021 | Artikel | FH-PUB-ID: 1594 |

J. L. Storck et al., “Metallic Supports Accelerate Carbonization and Improve Morphological Stability of Polyacrylonitrile Nanofibers during Heat Treatment,” Materials, vol. 14, no. 16, 2021.
HSBI-PUB
| DOI
| Download (ext.)
2021 | Artikel | FH-PUB-ID: 2170 |

B. Brockhagen et al., “Investigating minimal requirements for plants on textile substrates in low-cost hydroponic systems,” AIMS Bioengineering, vol. 8, no. 2, pp. 173–191, 2021.
HSBI-PUB
| DOI
| Download (ext.)
2021 | Artikel | FH-PUB-ID: 1081 |

J. L. Storck et al., “Stabilization and Carbonization of PAN Nanofiber Mats Electrospun on Metal Substrates,” C, vol. 7, no. 1, 2021.
HSBI-PUB
| DOI
| Download (ext.)
2021 | Masterarbeit | FH-PUB-ID: 2915
T. Grothe, Potential applications of stereolithographic 3D printing technique addressing biomechatronic challenges. 2021.
HSBI-PUB
2021 | Artikel | FH-PUB-ID: 2169
M. Dotter, J. L. Storck, M. Surjawidjaja, S. Adabra, and T. Grothe, “Investigation of the Long-Term Stability of Different Polymers and Their Blends with PEO to Produce Gel Polymer Electrolytes for Non-Toxic Dye-Sensitized Solar Cells,” Applied Sciences, vol. 11, no. 13, 2021.
HSBI-PUB
| DOI
2020 | Artikel | FH-PUB-ID: 668
Döpke C., Grothe T., Klöcker M., Ehrmann A., Blachowicz T., and Steblinski P., “ Electrospun multifunctional nanofiber nonwovens for bio-inspired computers (in Chinese language),” Melliand China, vol. 2, pp. 38–40, 2020.
HSBI-PUB
2020 | Artikel | FH-PUB-ID: 1082
J. L. Storck, M. Dotter, B. Brockhagen, and T. Grothe, “Evaluation of Novel Glycerol/PEO Gel Polymer Electrolytes for Non-Toxic Dye-Sensitized Solar Cells with Natural Dyes Regarding Long-Term Stability and Reproducibility,” Crystals, vol. 10, no. 12, 2020.
HSBI-PUB
| DOI
2020 | Artikel | FH-PUB-ID: 1083
J. L. Storck, M. Dotter, S. Adabra, M. Surjawidjaja, B. Brockhagen, and T. Grothe, “Long-Term Stability Improvement of Non-Toxic Dye-Sensitized Solar Cells via Poly(ethylene oxide) Gel Electrolytes for Future Textile-Based Solar Cells,” Polymers, vol. 12, no. 12, 2020.
HSBI-PUB
| DOI
2020 | Artikel | FH-PUB-ID: 629 |

J. L. Storck et al., “Orientation of Electrospun Magnetic Nanofibers Near Conductive Areas,” Materials, vol. 13, no. 1, 2020.
HSBI-PUB
| Dateien verfügbar
| DOI
2020 | Artikel | FH-PUB-ID: 680 |

T. Grothe, J. L. Storck, M. Dotter, and A. Ehrmann, “Impact of solid content in the electrospinning solution on the physical and chemical properties of polyacrylonitrile (PAN) nanofibrous mats,” Tekstilec, vol. 63, no. 3, pp. 225–232, 2020.
HSBI-PUB
| Dateien verfügbar
| DOI
2020 | Artikel | FH-PUB-ID: 673 |

M. Wortmann et al., “On the reliability of highly magnified micrographs for structural analysis in materials science,” Scientific Reports, vol. 10, 2020.
HSBI-PUB
| Dateien verfügbar
| DOI
2020 | Artikel | FH-PUB-ID: 654 |

N. Fokin et al., “Magnetic Properties of Electrospun Magnetic Nanofiber Mats after Stabilization and Carbonization,” Materials, vol. 13, no. 7, 2020.
HSBI-PUB
| Dateien verfügbar
| DOI
2020 | Artikel | FH-PUB-ID: 670 |

J. L. Storck et al., “Stabilization and Incipient Carbonization of Electrospun Polyacrylonitrile Nanofibers Fixated on Aluminum Substrates,” Fibers, vol. 8, no. 9, 2020.
HSBI-PUB
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| DOI
| Download (ext.)
2020 | Artikel | FH-PUB-ID: 692 |

B. Brockhagen, J. L. Storck, T. Grothe, R. Böttjer, and A. Ehrmann, “ Improved growth and harvesting of microalgae Chlorella vulgaris on textile fabrics as 2.5D substrates,” AIMS Bioengineering, vol. 8, no. 1, pp. 16–24, 2020.
HSBI-PUB
| Dateien verfügbar
| DOI
| Download (ext.)
2020 | Artikel | FH-PUB-ID: 1291 |

T. Grothe, B. Brockhagen, and J. L. Storck, “Three-dimensional printing resin on different textile substrates using stereolithography: A proof of concept,” Journal of Engineered Fibers and Fabrics, vol. 15, 2020.
HSBI-PUB
| Dateien verfügbar
| DOI
2019 | Artikel | FH-PUB-ID: 573 |

L. Sabantina et al., “ Morphological study of stabilization and carbonization of polyacrylonitrile/TiO2 nanofiber mats,” Journal of Engineered Fibers and Fabrics, vol. 14, pp. 1–8, 2019.
HSBI-PUB
| Dateien verfügbar
| DOI
2019 | Artikel | FH-PUB-ID: 522 |

T. Grothe, L. Sabantina, M. Klöcker, I. Juhász Junger, C. Döpke, and A. Ehrmann, “Wet relaxation of electrospun nanofiber mats,” Technologies , vol. 7, no. 1, 2019.
HSBI-PUB
| Dateien verfügbar
| DOI
2019 | Buchbeitrag | FH-PUB-ID: 520
R. Böttjer, T. Grothe, D. Wehlage, and A. Ehrmann, “ Needleless Electrospinning of Carboxymethyl Cellulose,” in Carboxymethyl Cellulose Vol. II - Pharmaceutical and Industrial Applications, I. H. Mondal, Ed. Nova Science Publishers, 2019, pp. 229–252.
HSBI-PUB
2019 | Artikel | FH-PUB-ID: 519
C. Döpke, T. Grothe, M. Klöcker, P. Steblinski, T. Blachowicz, and A. Ehrmann, “ Elektrogesponnene multifunktionale Nanofaservliese für biobasierte Computer,” Technische Textilien, vol. 62, no. 1, pp. 39–41, 2019.
HSBI-PUB
2019 | Artikel | FH-PUB-ID: 524
C. Döpke, T. Grothe, M. Klöcker, P. Stebliski, T. Blachowicz, and A. Ehrmann, “ Electrospun multifunctional nanofiber nonwovens for bio-inspired computers,” Technical Textiles, vol. 62, pp. E45–E47, 2019.
HSBI-PUB
2019 | Artikel | FH-PUB-ID: 280
C. Döpke, T. Grothe, M. Klöcker, A. Ehrmann, T. Blachowicz, and P. Steblinski, “Electrospun multifunctional nanofiber nonwovens for bio-inspired computers,” Chemical Fibers International, vol. 69, no. 1, pp. 46–48, 2019.
HSBI-PUB
2019 | Artikel | FH-PUB-ID: 614 |

J. L. Storck et al., “ Seed Germination and Seedling Growth on Knitted Fabrics as New Substrates for Hydroponic Systems ,” Horticulturae , vol. 5, no. 4, 2019.
HSBI-PUB
| Dateien verfügbar
| DOI
2019 | Artikel | FH-PUB-ID: 594 |

R. Böttjer et al., “Influence of Textile and Environmental Parameters on Plant Growth on Vertically Mounted Knitted Fabrics,” Tekstilec, vol. 62, no. 3, pp. 200–207, 2019.
HSBI-PUB
| Dateien verfügbar
| DOI
2019 | Artikel | FH-PUB-ID: 166 |

D. Wehlage et al., “Sterilization of PAN/Gelatin Nanofibrous Mats for Cell Growth,” Tekstilec , vol. 62, no. 2, pp. 78–88, 2019.
HSBI-PUB
| Dateien verfügbar
| DOI
2019 | Artikel | FH-PUB-ID: 1065 |

C. Döpke et al., “Magnetic Nanofiber Mats for Data Storage and Transfer,” Nanomaterials, vol. 9, no. 1, 2019.
HSBI-PUB
| DOI
| Download (ext.)
2018 | Buchbeitrag | FH-PUB-ID: 2910
R. Böttjer, T. Grothe, and A. Ehrmann, “Functional Nanofiber Mats for Medical and Biotechnological Applications,” in Narrow and Smart Textiles, Y. Kyosev, B. Mahltig, and A. Schwarz-Pfeiffer, Eds. Cham: Springer International Publishing, 2018, pp. 203–214.
HSBI-PUB
| DOI
2018 | Artikel | FH-PUB-ID: 164 |

R. Böttjer, T. Grothe, D. Wehlage, and A. Ehrmann, “Electrospraying poloxamer/(bio-)polymer blends using a needleless electrospinning machine ,” Journal of Textiles and Fibrous Materials, vol. 1, 2018.
HSBI-PUB
| DOI
| Download (ext.)
2018 | Artikel | FH-PUB-ID: 2908
R. Böttjer, D. Wehlage, T. Grothe, I. Juhász Junger, and A. Ehrmann, “Elektrospinnen von PAN/Carbon-Nanovliesen zur Integration in textilbasierte Farbstoffsolarzellen,” Chemie Ingenieur Technik, vol. 90, no. 9, pp. 1213–1213, 2018.
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| DOI
| Download (ext.)
2018 | Bachelorarbeit | FH-PUB-ID: 2913
T. Grothe, Elektrogesponnen Nanofaservliese als Filtermaterial in der Biotechnologie. 2018.
HSBI-PUB
2018 | Artikel | FH-PUB-ID: 2907 |

A. Ehrmann et al., “Spincoaten organischer Dünnschichten auf elektrogesponnene Nanovliese und -membranen,” Chemie Ingenieur Technik, vol. 90, no. 9, pp. 1214–1215, 2018.
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| DOI
| Download (ext.)
2017 | Artikel | FH-PUB-ID: 346 |

T. Grothe, J. Brikmann, H. Meissner, and A. Ehrmann, “Influence of Solution and Spinning Parameters on Nanofiber Mat Creation of Poly(ethylene oxide) by Needleless Electrospinningpinning,” Materials Science (Medziagotyra), vol. 23, no. 4, pp. 342–349, 2017.
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| Download (ext.)
2017 | Artikel | FH-PUB-ID: 349 |

T. Grothe, D. Wehlage, T. Böhm, A. Remche, and A. Ehrmann, “Needleless electrospinning of PAN nanofibre mats,” Tekstilec, vol. 60, no. 4, pp. 290–295, 2017.
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| Download (ext.)
2017 | Konferenzbeitrag | FH-PUB-ID: 325 |

N. Löwen, T. Grothe, S. V. Homburg, and A. Ehrmann, “Electrospinning and stabilization of chitosan nanofiber mats,” in IOP Conference Series: Materials Science and Engineering, Corfu, Greece, 2017, vol. 254.
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| Download (ext.)
2017 | Artikel | FH-PUB-ID: 347 |

T. Grothe, N. Löwen, S. V. Homburg, and A. Ehrmann, “Possible applications of nano-spun fabrics and materials,” Materials Today: Proceedings, vol. 4, p. S. 154-S. 159, 2017.
HSBI-PUB
| Download (ext.)
2017 | Buchbeitrag | FH-PUB-ID: 345
T. Grothe, N. Löwen, S. V. Homburg, and A. Ehrmann, “Green electrospinning of nanofiber mats from biopolymers for medical and biotechnological applications,” in Textiles: Advances in Research and Applications, 2017, pp. 115–131.
HSBI-PUB
2017 | Konferenzbeitrag | FH-PUB-ID: 2902 |

T. Grothe, C. Großerhode, T. Hauser, P. Kern, K. Stute, and A. Ehrmann, “Needleless electrospinning of PEO nanofiber mats,” in Proceedings of the Second International Conference on Mechanics, Materials and Structural Engineering (ICMMSE 2017), Beijing, China, 2017.
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| DOI
| Download (ext.)
2016 | Konferenzbeitrag | FH-PUB-ID: 2900 |

T. Grothe, J. Brikmann, and A. Ehrmann, “PEO as spinnable polymer and spinning-agent for non-spinnable materials,” in Aachen-Dresden-Denkendorf International Textile Conference 2016, Dresden, 2016.
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55 Publikationen
2025 | Konferenzbeitrag | FH-PUB-ID: 5602 |

H. G. Ramirez Candia, U. Güth, T. Grothe, and A. Ehrmann, “Optimization of the Spinning Parameters for Wire-Based Electrospinning of Casein–PEO Nanofiber Mats,” vol. 81, no. 1. MDPI, Basel Switzerland, 2025.
HSBI-PUB
| Dateien verfügbar
| DOI
2025 | Artikel | FH-PUB-ID: 5600 |

B. Brockhagen et al., “Freestanding Flexible Carbon Nanofiber Mats for Energy Storage Applications,” material proceedings, vol. 21, no. 1, p. 1, 2025.
HSBI-PUB
| Dateien verfügbar
| DOI
2024 | Artikel | FH-PUB-ID: 5166 |

N. S. Mpofu et al., “Influence of the PAN:PEO Ratio on the Morphology of Needleless Electrospun Nanofiber Mats Before and After Carbonization,” Fibers, vol. 12, no. 11, 2024.
HSBI-PUB
| Dateien verfügbar
| DOI
2024 | Artikel | FH-PUB-ID: 4370 |

E. Tanzli et al., “Improved cell growth on additively manufactured Ti64 substrates with varying porosity and nanofibrous coating,” Heliyon, vol. 10, no. 3, 2024.
HSBI-PUB
| Dateien verfügbar
| DOI
2023 | Artikel | FH-PUB-ID: 2912 |

G. Erdem, T. Grothe, and A. Ehrmann, “Adhesion of new thermoplastic materials printed on textile fabrics,” Tekstilec, vol. 66, no. 1, pp. 57–63, 2023.
HSBI-PUB
| Dateien verfügbar
| DOI
| Download (ext.)
2022 | Artikel | FH-PUB-ID: 2019 |

L. Bauer et al., “Electrospinning for the Modification of 3D Objects for the Potential Use in Tissue Engineering,” Technologies, vol. 10, no. 3, 2022.
HSBI-PUB
| Dateien verfügbar
| DOI
2022 | Artikel | FH-PUB-ID: 2039 |

J. L. Storck et al., “Comparative Study of Metal Substrates for Improved Carbonization of Electrospun PAN Nanofibers,” Polymers, vol. 14, no. 4, 2022.
HSBI-PUB
| Dateien verfügbar
| DOI
| Download (ext.)
2021 | Artikel | FH-PUB-ID: 1581 |

E. Diestelhorst et al., “Necessary Parameters of Vertically Mounted Textile Substrates for Successful Cultivation of Cress for Low-Budget Vertical Farming,” TEKSTILEC, vol. 64, no. 4, pp. 276–285, 2021.
HSBI-PUB
| DOI
| Download (ext.)
2021 | Artikel | FH-PUB-ID: 1294 |

C. Hellert, J. L. Storck, T. Grothe, B. Kaltschmidt, A. Hütten, and A. Ehrmann, “Positioning and Aligning Electrospun PAN Fibers by Conductive and Dielectric Substrate Patterns,” Macromolecular Symposia, vol. 395, no. 1, 2021.
HSBI-PUB
| DOI
| Download (ext.)
2021 | Artikel | FH-PUB-ID: 1607 |

T. Grothe et al., “Optical Index Matching, Flexible Electrospun Substrates for Seamless Organic Photocapacitive Sensors,” physica status solidi (b), vol. 258, no. 6, 2021.
HSBI-PUB
| DOI
| Download (ext.)
2021 | Artikel | FH-PUB-ID: 1594 |

J. L. Storck et al., “Metallic Supports Accelerate Carbonization and Improve Morphological Stability of Polyacrylonitrile Nanofibers during Heat Treatment,” Materials, vol. 14, no. 16, 2021.
HSBI-PUB
| DOI
| Download (ext.)
2021 | Artikel | FH-PUB-ID: 2170 |

B. Brockhagen et al., “Investigating minimal requirements for plants on textile substrates in low-cost hydroponic systems,” AIMS Bioengineering, vol. 8, no. 2, pp. 173–191, 2021.
HSBI-PUB
| DOI
| Download (ext.)
2021 | Artikel | FH-PUB-ID: 1081 |

J. L. Storck et al., “Stabilization and Carbonization of PAN Nanofiber Mats Electrospun on Metal Substrates,” C, vol. 7, no. 1, 2021.
HSBI-PUB
| DOI
| Download (ext.)
2021 | Masterarbeit | FH-PUB-ID: 2915
T. Grothe, Potential applications of stereolithographic 3D printing technique addressing biomechatronic challenges. 2021.
HSBI-PUB
2021 | Artikel | FH-PUB-ID: 2169
M. Dotter, J. L. Storck, M. Surjawidjaja, S. Adabra, and T. Grothe, “Investigation of the Long-Term Stability of Different Polymers and Their Blends with PEO to Produce Gel Polymer Electrolytes for Non-Toxic Dye-Sensitized Solar Cells,” Applied Sciences, vol. 11, no. 13, 2021.
HSBI-PUB
| DOI
2020 | Artikel | FH-PUB-ID: 668
Döpke C., Grothe T., Klöcker M., Ehrmann A., Blachowicz T., and Steblinski P., “ Electrospun multifunctional nanofiber nonwovens for bio-inspired computers (in Chinese language),” Melliand China, vol. 2, pp. 38–40, 2020.
HSBI-PUB
2020 | Artikel | FH-PUB-ID: 1082
J. L. Storck, M. Dotter, B. Brockhagen, and T. Grothe, “Evaluation of Novel Glycerol/PEO Gel Polymer Electrolytes for Non-Toxic Dye-Sensitized Solar Cells with Natural Dyes Regarding Long-Term Stability and Reproducibility,” Crystals, vol. 10, no. 12, 2020.
HSBI-PUB
| DOI
2020 | Artikel | FH-PUB-ID: 1083
J. L. Storck, M. Dotter, S. Adabra, M. Surjawidjaja, B. Brockhagen, and T. Grothe, “Long-Term Stability Improvement of Non-Toxic Dye-Sensitized Solar Cells via Poly(ethylene oxide) Gel Electrolytes for Future Textile-Based Solar Cells,” Polymers, vol. 12, no. 12, 2020.
HSBI-PUB
| DOI
2020 | Artikel | FH-PUB-ID: 629 |

J. L. Storck et al., “Orientation of Electrospun Magnetic Nanofibers Near Conductive Areas,” Materials, vol. 13, no. 1, 2020.
HSBI-PUB
| Dateien verfügbar
| DOI
2020 | Artikel | FH-PUB-ID: 680 |

T. Grothe, J. L. Storck, M. Dotter, and A. Ehrmann, “Impact of solid content in the electrospinning solution on the physical and chemical properties of polyacrylonitrile (PAN) nanofibrous mats,” Tekstilec, vol. 63, no. 3, pp. 225–232, 2020.
HSBI-PUB
| Dateien verfügbar
| DOI
2020 | Artikel | FH-PUB-ID: 673 |

M. Wortmann et al., “On the reliability of highly magnified micrographs for structural analysis in materials science,” Scientific Reports, vol. 10, 2020.
HSBI-PUB
| Dateien verfügbar
| DOI
2020 | Artikel | FH-PUB-ID: 654 |

N. Fokin et al., “Magnetic Properties of Electrospun Magnetic Nanofiber Mats after Stabilization and Carbonization,” Materials, vol. 13, no. 7, 2020.
HSBI-PUB
| Dateien verfügbar
| DOI
2020 | Artikel | FH-PUB-ID: 670 |

J. L. Storck et al., “Stabilization and Incipient Carbonization of Electrospun Polyacrylonitrile Nanofibers Fixated on Aluminum Substrates,” Fibers, vol. 8, no. 9, 2020.
HSBI-PUB
| Dateien verfügbar
| DOI
| Download (ext.)
2020 | Artikel | FH-PUB-ID: 692 |

B. Brockhagen, J. L. Storck, T. Grothe, R. Böttjer, and A. Ehrmann, “ Improved growth and harvesting of microalgae Chlorella vulgaris on textile fabrics as 2.5D substrates,” AIMS Bioengineering, vol. 8, no. 1, pp. 16–24, 2020.
HSBI-PUB
| Dateien verfügbar
| DOI
| Download (ext.)
2020 | Artikel | FH-PUB-ID: 1291 |

T. Grothe, B. Brockhagen, and J. L. Storck, “Three-dimensional printing resin on different textile substrates using stereolithography: A proof of concept,” Journal of Engineered Fibers and Fabrics, vol. 15, 2020.
HSBI-PUB
| Dateien verfügbar
| DOI
2019 | Artikel | FH-PUB-ID: 573 |

L. Sabantina et al., “ Morphological study of stabilization and carbonization of polyacrylonitrile/TiO2 nanofiber mats,” Journal of Engineered Fibers and Fabrics, vol. 14, pp. 1–8, 2019.
HSBI-PUB
| Dateien verfügbar
| DOI
2019 | Artikel | FH-PUB-ID: 522 |

T. Grothe, L. Sabantina, M. Klöcker, I. Juhász Junger, C. Döpke, and A. Ehrmann, “Wet relaxation of electrospun nanofiber mats,” Technologies , vol. 7, no. 1, 2019.
HSBI-PUB
| Dateien verfügbar
| DOI
2019 | Buchbeitrag | FH-PUB-ID: 520
R. Böttjer, T. Grothe, D. Wehlage, and A. Ehrmann, “ Needleless Electrospinning of Carboxymethyl Cellulose,” in Carboxymethyl Cellulose Vol. II - Pharmaceutical and Industrial Applications, I. H. Mondal, Ed. Nova Science Publishers, 2019, pp. 229–252.
HSBI-PUB
2019 | Artikel | FH-PUB-ID: 519
C. Döpke, T. Grothe, M. Klöcker, P. Steblinski, T. Blachowicz, and A. Ehrmann, “ Elektrogesponnene multifunktionale Nanofaservliese für biobasierte Computer,” Technische Textilien, vol. 62, no. 1, pp. 39–41, 2019.
HSBI-PUB
2019 | Artikel | FH-PUB-ID: 524
C. Döpke, T. Grothe, M. Klöcker, P. Stebliski, T. Blachowicz, and A. Ehrmann, “ Electrospun multifunctional nanofiber nonwovens for bio-inspired computers,” Technical Textiles, vol. 62, pp. E45–E47, 2019.
HSBI-PUB
2019 | Artikel | FH-PUB-ID: 280
C. Döpke, T. Grothe, M. Klöcker, A. Ehrmann, T. Blachowicz, and P. Steblinski, “Electrospun multifunctional nanofiber nonwovens for bio-inspired computers,” Chemical Fibers International, vol. 69, no. 1, pp. 46–48, 2019.
HSBI-PUB
2019 | Artikel | FH-PUB-ID: 614 |

J. L. Storck et al., “ Seed Germination and Seedling Growth on Knitted Fabrics as New Substrates for Hydroponic Systems ,” Horticulturae , vol. 5, no. 4, 2019.
HSBI-PUB
| Dateien verfügbar
| DOI
2019 | Artikel | FH-PUB-ID: 594 |

R. Böttjer et al., “Influence of Textile and Environmental Parameters on Plant Growth on Vertically Mounted Knitted Fabrics,” Tekstilec, vol. 62, no. 3, pp. 200–207, 2019.
HSBI-PUB
| Dateien verfügbar
| DOI
2019 | Artikel | FH-PUB-ID: 166 |

D. Wehlage et al., “Sterilization of PAN/Gelatin Nanofibrous Mats for Cell Growth,” Tekstilec , vol. 62, no. 2, pp. 78–88, 2019.
HSBI-PUB
| Dateien verfügbar
| DOI
2019 | Artikel | FH-PUB-ID: 1065 |

C. Döpke et al., “Magnetic Nanofiber Mats for Data Storage and Transfer,” Nanomaterials, vol. 9, no. 1, 2019.
HSBI-PUB
| DOI
| Download (ext.)
2018 | Buchbeitrag | FH-PUB-ID: 2910
R. Böttjer, T. Grothe, and A. Ehrmann, “Functional Nanofiber Mats for Medical and Biotechnological Applications,” in Narrow and Smart Textiles, Y. Kyosev, B. Mahltig, and A. Schwarz-Pfeiffer, Eds. Cham: Springer International Publishing, 2018, pp. 203–214.
HSBI-PUB
| DOI
2018 | Artikel | FH-PUB-ID: 164 |

R. Böttjer, T. Grothe, D. Wehlage, and A. Ehrmann, “Electrospraying poloxamer/(bio-)polymer blends using a needleless electrospinning machine ,” Journal of Textiles and Fibrous Materials, vol. 1, 2018.
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2018 | Artikel | FH-PUB-ID: 2908
R. Böttjer, D. Wehlage, T. Grothe, I. Juhász Junger, and A. Ehrmann, “Elektrospinnen von PAN/Carbon-Nanovliesen zur Integration in textilbasierte Farbstoffsolarzellen,” Chemie Ingenieur Technik, vol. 90, no. 9, pp. 1213–1213, 2018.
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2018 | Bachelorarbeit | FH-PUB-ID: 2913
T. Grothe, Elektrogesponnen Nanofaservliese als Filtermaterial in der Biotechnologie. 2018.
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2018 | Artikel | FH-PUB-ID: 2907 |

A. Ehrmann et al., “Spincoaten organischer Dünnschichten auf elektrogesponnene Nanovliese und -membranen,” Chemie Ingenieur Technik, vol. 90, no. 9, pp. 1214–1215, 2018.
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2017 | Artikel | FH-PUB-ID: 346 |

T. Grothe, J. Brikmann, H. Meissner, and A. Ehrmann, “Influence of Solution and Spinning Parameters on Nanofiber Mat Creation of Poly(ethylene oxide) by Needleless Electrospinningpinning,” Materials Science (Medziagotyra), vol. 23, no. 4, pp. 342–349, 2017.
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2017 | Artikel | FH-PUB-ID: 349 |

T. Grothe, D. Wehlage, T. Böhm, A. Remche, and A. Ehrmann, “Needleless electrospinning of PAN nanofibre mats,” Tekstilec, vol. 60, no. 4, pp. 290–295, 2017.
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2017 | Konferenzbeitrag | FH-PUB-ID: 325 |

N. Löwen, T. Grothe, S. V. Homburg, and A. Ehrmann, “Electrospinning and stabilization of chitosan nanofiber mats,” in IOP Conference Series: Materials Science and Engineering, Corfu, Greece, 2017, vol. 254.
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2017 | Artikel | FH-PUB-ID: 347 |

T. Grothe, N. Löwen, S. V. Homburg, and A. Ehrmann, “Possible applications of nano-spun fabrics and materials,” Materials Today: Proceedings, vol. 4, p. S. 154-S. 159, 2017.
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2017 | Buchbeitrag | FH-PUB-ID: 345
T. Grothe, N. Löwen, S. V. Homburg, and A. Ehrmann, “Green electrospinning of nanofiber mats from biopolymers for medical and biotechnological applications,” in Textiles: Advances in Research and Applications, 2017, pp. 115–131.
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2017 | Konferenzbeitrag | FH-PUB-ID: 2902 |

T. Grothe, C. Großerhode, T. Hauser, P. Kern, K. Stute, and A. Ehrmann, “Needleless electrospinning of PEO nanofiber mats,” in Proceedings of the Second International Conference on Mechanics, Materials and Structural Engineering (ICMMSE 2017), Beijing, China, 2017.
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2016 | Konferenzbeitrag | FH-PUB-ID: 2900 |

T. Grothe, J. Brikmann, and A. Ehrmann, “PEO as spinnable polymer and spinning-agent for non-spinnable materials,” in Aachen-Dresden-Denkendorf International Textile Conference 2016, Dresden, 2016.
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