Dr. Johannes Zimmermann

  • externer Doktorand
  • Gedruckte elektrochemische Leuchtzellen auf Basis von biologisch kompatiblen und biologisch abbaubaren Materialien

Doktorprüfung

Thema: Gedruckte elektrochemische Leuchtzellen auf Basis von biologisch kompatiblen und biologisch abbaubaren Materialien

Mündliche Prüfung: 06.02.2019
Referent: Dr. Gerardo Hernandez-Sosa
1. Korreferent: Prof. Dr.-Ing. habil. Wolfgang Kowalsky (Technische Universität Braunschweig)
2. Korreferent: Prof. Dr.rer.nat. Uli Lemmer

Publikationen


2024
High‐Resolution Printed Ethylene Vinyl Acetate Based Strain Sensor for Impact Sensing
Nazari, P.; Zimmermann, J.; Melzer, C.; Kowalsky, W.; Aghassi-Hagmann, J.; Hernandez-Sosa, G.; Lemmer, U.
2024. Advanced Sensor Research, Art.-Nr.: 2300189. doi:10.1002/adsr.202300189
2023
Piezoresistive Free‐standing Microfiber Strain Sensor for High‐resolution Battery Thickness Monitoring
Nazari, P.; Bäuerle, R.; Bäuerle, R.; Zimmermann, J.; Melzer, C.; Schwab, C.; Smith, A.; Kowalsky, W.; Aghassi-Hagmann, J.; Hernandez-Sosa, G.; Lemmer, U.
2023. Advanced Materials, 35 (21), Art.-Nr.: 2212189. doi:10.1002/adma.202212189
2020
Extraction of 2′-O-apiosyl-6′-O-crotonic acid-betanin from the ayrampo seed (Opuntia soehrensii) cuticle and its use as an emitting layer in an organic light-emitting diode
Rivera Tito, H. A.; Hernández-Sosa, G.; Romero-Nieto, C.; Regulska, E.; Jürgensen, N.; Zimmermann, J.; Salazar-Salinas, K.; Quintana Caceda, M. E.
2020. RSC Advances, 10 (60), 36695–36703. doi:10.1039/d0ra05543c
2019
Ultrathin Fully Printed Light-Emitting Electrochemical Cells with Arbitrary Designs on Biocompatible Substrates
Zimmermann, J.; Schlisske, S.; Held, M.; Tisserant, J.-N.; Porcarelli, L.; Sanchez-Sanchez, A.; Mecerreyes, D.; Hernandez-Sosa, G.
2019. Advanced materials technologies, 4 (3), Art. Nr.: 1800641. doi:10.1002/admt.201800641
Organophosphorus-B(C6F5)3 adducts: Towards new solid-state emitting materials
Regulska, E.; Christ, S.; Zimmermann, J.; Rominger, F.; Hernandez-Sosa, G.; Romero-Nieto, C.
2019. Dalton transactions, 48 (34), 12803–12807. doi:10.1039/c9dt02258a
Inkjet-printed polymer-based electrochromic and electrofluorochromic dual-mode displays
Pietsch, M.; Rödlmeier, T.; Schlisske, S.; Zimmermann, J.; Romero-Nieto, C.; Hernandez-Sosa, G.
2019. Journal of materials chemistry / C, 7 (23), 7121–7127. doi:10.1039/c9tc01344j
Lighting with organophosphorus materials: Solution-processed blue/cyan light-emitting devices based on phosphaphenalenes
Hindenberg, P.; Zimmermann, J.; Hernandez-Sosa, G.; Romero-Nieto, C.
2019. Dalton transactions, 48 (22), 7503–7508. doi:10.1039/c9dt00380k
2018
Fully Printed Light‐Emitting Electrochemical Cells Utilizing Biocompatible Materials
Zimmermann, J.; Porcarelli, L.; Rödlmeier, T.; Sanchez-Sanchez, A.; Mecerreyes, D.; Hernandez-Sosa, G.
2018. Advanced functional materials, 28 (24), Art.-Nr.: 1705795. doi:10.1002/adfm.201705795
2017
Simple light-emitting electrochemical cell using reduced graphene oxide and a ruthenium (II) complex
Rivera Tito, H. A.; Zimmermann, J.; Jürgensen, N.; Hernández Sosa, G.; Caceda, M. E. Q.
2017. Applied optics, 56 (23), 6476–6484. doi:10.1364/AO.56.006476
Solution-Processed Bio-OLEDs with a Vitamin-Derived Riboflavin Tetrabutyrate Emission Layer
Jürgensen, N.; Ackermann, M.; Marszalek, T.; Zimmermann, J.; Morfa, A. J.; Pisula, W.; Bunz, U. H. F.; Hinkel, F.; Hernandez-Sosa, G.
2017. ACS sustainable chemistry & engineering, 5 (6), 5368–5372. doi:10.1021/acssuschemeng.7b00675
2016
Poly(lactic-co-glycolic acid) (PLGA) as Ion-Conducting Polymer for Biodegradable Light-Emitting Electrochemical Cells
Zimmermann, J.; Jürgensen, N.; Morfa, A. J.; Wang, B.; Tekoglu, S.; Hernandez-Sosa, G.
2016. ACS sustainable chemistry & engineering, 4 (12), 7050–7055. doi:10.1021/acssuschemeng.6b01953
Biodegradable Polycaprolactone as Ion Solvating Polymer for Solution-Processed Light-Emitting Electrochemical Cells
Jürgensen, N.; Zimmermann, J.; Morfa, A. J.; Hernandez-Sosa, G.
2016. Scientific reports, 6, 36643. doi:10.1038/srep36643
Photo-Cross-Linkable Polymeric Optoelectronics Based on the [2 + 2] Cycloaddition Reaction of Cinnamic Acid
Schelkle, K. M.; Bender, M.; Beck, S.; Jeltsch, K. F.; Stolz, S.; Zimmermann, J.; Weitz, R. T.; Pucci, A.; Müllen, K.; Hamburger, M.; Bunz, U. H. F.
2016. Macromolecules, 49 (5), 1518–1522. doi:10.1021/acs.macromol.5b02407