Search Results - "Jager, Edwin W H"

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  1. 1

    Organic electronics for precise delivery of neurotransmitters to modulate mammalian sensory function by Hori, Ryusuke, Richter-Dahlfors, Agneta, Simon, Daniel T, Kurup, Sindhulakshmi, Larsson, Karin C, Tybrandt, Klas, Goiny, Michel, Jager, Edwin W. H, Berggren, Magnus, Canlon, Barbara

    Published in Nature materials (01-09-2009)
    “…Significant advances have been made in the understanding of the pathophysiology, molecular targets and therapies for the treatment of a variety of…”
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  2. 2

    Knitting and weaving artificial muscles by Maziz, Ali, Concas, Alessandro, Khaldi, Alexandre, Stålhand, Jonas, Persson, Nils-Krister, Jager, Edwin W H

    Published in Science advances (01-01-2017)
    “…A need exists for artificial muscles that are silent, soft, and compliant, with performance characteristics similar to those of skeletal muscle, enabling…”
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  3. 3

    Biocompatibility of Polypyrrole with Human Primary Osteoblasts and the Effect of Dopants by Fahlgren, Anna, Bratengeier, Cornelia, Gelmi, Amy, Semeins, Cornelis M, Klein-Nulend, Jenneke, Jager, Edwin W H, Bakker, Astrid D

    Published in PloS one (30-07-2015)
    “…Polypyrrole (PPy) is a conducting polymer that enables controlled drug release upon electrical stimulation. We characterized the biocompatibility of PPy with…”
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  4. 4

    Textile Actuators Comprising Reduced Graphene Oxide as the Current Collector by Dutta, Sujan, Mehraeen, Shayan, Martinez, Jose G., Bashir, Tariq, Persson, Nils‐Krister, Jager, Edwin W. H.

    Published in Macromolecular materials and engineering (01-03-2024)
    “…Electronic textiles (E‐textiles) are made using various materials including carbon nanotubes, graphene, and graphene oxide. Among the materials here,…”
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  5. 5

    Control of neural stem cell survival by electroactive polymer substrates by Lundin, Vanessa, Herland, Anna, Berggren, Magnus, Jager, Edwin W H, Teixeira, Ana I

    Published in PloS one (11-04-2011)
    “…Stem cell function is regulated by intrinsic as well as microenvironmental factors, including chemical and mechanical signals. Conducting polymer-based cell…”
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  6. 6

    Direct Mechanical Stimulation of Stem Cells: A Beating Electromechanically Active Scaffold for Cardiac Tissue Engineering by Gelmi, Amy, Cieslar-Pobuda, Artur, de Muinck, Ebo, Los, Marek, Rafat, Mehrdad, Jager, Edwin W. H.

    Published in Advanced healthcare materials (01-06-2016)
    “…The combination of stem cell therapy with a supportive scaffold is a promising approach to improving cardiac tissue engineering. Stem cell therapy can be used…”
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  7. 7

    Electrochemical control of bone microstructure on electroactive surfaces for modulation of stem cells and bone tissue engineering by Cao, Danfeng, Martinez, Jose G., Anada, Risa, Hara, Emilio Satoshi, Kamioka, Hiroshi, Jager, Edwin W. H.

    “…Controlling stem cell behavior at the material interface is crucial for the development of novel technologies in stem cell biology and regenerative medicine…”
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  8. 8

    Doping Polypyrrole Films with 4-N-Pentylphenylboronic Acid to Enhance Affinity towards Bacteria and Dopamine by Golabi, Mohsen, Padiolleau, Laurence, Chen, Xi, Jafari, Mohammad Javad, Sheikhzadeh, Elham, Turner, Anthony P F, Jager, Edwin W H, Beni, Valerio

    Published in PloS one (22-11-2016)
    “…Here we demonstrate the use of a functional dopant as a fast and simple way to tune the chemical affinity and selectivity of polypyrrole films. More…”
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  9. 9

    Conjugated Polymer Actuators and Devices: Progress and Opportunities by Melling, Daniel, Martinez, Jose G., Jager, Edwin W. H.

    Published in Advanced materials (Weinheim) (01-05-2019)
    “…Conjugated polymers (CPs), as exemplified by polypyrrole, are intrinsically conducting polymers with potential for development as soft actuators or “artificial…”
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  10. 10

    Microfabricating Conjugated Polymer Actuators by Edwin W. H. Jager, Smela, Elisabeth, Inganäs, Olle

    “…Conjugated polymer actuators can be operated in aqueous media, which makes them attractive for laboratories-on-a-chip and applications under physiological…”
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  11. 11

    Microrobots for Micrometer-Size Objects in Aqueous Media: Potential Tools for Single-Cell Manipulation by Jager, Edwin W. H., Inganäs, Olle, Lundström, Ingemar

    “…Conducting polymers are excellent materials for actuators that are operated in aqueous media. Microactuators based on polypyrrole-gold bilayers enable large…”
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  12. 12

    Control of Neural Stem Cell Adhesion and Density by an Electronic Polymer Surface Switch by Saltó, Carmen, Saindon, Emilien, Bolin, Maria, Kanciurzewska, Anna, Fahlman, Mats, Jager, Edwin W. H, Tengvall, Pentti, Arenas, Ernest, Berggren, Magnus

    Published in Langmuir (16-12-2008)
    “…Adhesion is an essential parameter for stem cells. It regulates the overall cell density along the carrying surface, which further dictates the differentiation…”
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  13. 13

    Electrochemical Control of Growth Factor Presentation To Steer Neural Stem Cell Differentiation by Herland, Anna, Persson, Kristin M., Lundin, Vanessa, Fahlman, Mats, Berggren, Magnus, Jager, Edwin W. H., Teixeira, Ana I.

    Published in Angewandte Chemie International Edition (23-12-2011)
    “…Let it grow: The conjugated polymer poly(3,4‐ethylenedioxythiophene) (PEDOT) was synthesized with heparin as the counterion to form a cell culture substrate…”
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  14. 14

    Plasmonic Metasurfaces with Conjugated Polymers for Flexible Electronic Paper in Color by Xiong, Kunli, Emilsson, Gustav, Maziz, Ali, Yang, Xinxin, Shao, Lei, Jager, Edwin W. H., Dahlin, Andreas B.

    Published in Advanced materials (Weinheim) (01-12-2016)
    “…A flexible electronic paper in full color is realized by plasmonic metasurfaces with conjugated polymers. An ultrathin large‐area electrochromic material is…”
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  15. 15

    Effect of the Electrolyte Concentration and Substrate on Conducting Polymer Actuators by Martinez, Jose G, Otero, Toribio F, Jager, Edwin W. H

    Published in Langmuir (08-04-2014)
    “…The effect of the electrolyte concentration (NaCl aqueous electrolyte) on the dimensional variations of films of polypyrrole doped with dodecylbenzenesulfonate…”
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  16. 16

    Highly Conductive, Photolithographically Patternable Ionogels for Flexible and Stretchable Electrochemical Devices by Zhong, Yong, Nguyen, Giao T. M, Plesse, Cédric, Vidal, Frédéric, Jager, Edwin W. H

    Published in ACS applied materials & interfaces (27-06-2018)
    “…An ionic conducting membrane is an essential part in various electrochemical devices including ionic actuators. To miniaturize these devices, micropatterns of…”
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  17. 17

    Type I Collagen-Derived Injectable Conductive Hydrogel Scaffolds as Glucose Sensors by Ravichandran, Ranjithkumar, Martinez, Jose G, Jager, Edwin W. H, Phopase, Jaywant, Turner, Anthony P. F

    Published in ACS applied materials & interfaces (16-05-2018)
    “…The advent of home blood glucose monitoring revolutionized diabetes management, and the recent introduction of both wearable devices and closed-loop continuous…”
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  18. 18

    Novel actuators based on polypyrrole/carbide-derived carbon hybrid materials by Torop, Janno, Aabloo, Alvo, Jager, Edwin W.H.

    Published in Carbon (New York) (01-12-2014)
    “…Polypyrrole (PPy) hybrid films incorporated with porous carbide-derived carbon (CDC) particles are synthesized through a novel one-step electrochemical…”
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  19. 19

    Electroresponsive Nanoporous Membranes by Coating Anodized Alumina with Poly(3,4-ethylenedioxythiophene) and Polypyrrole by Abelow, Alexis E., Persson, Kristin M., Jager, Edwin W. H., Berggren, Magnus, Zharov, Ilya

    Published in Macromolecular materials and engineering (01-02-2014)
    “…Electrically‐active nanoporous membranes are prepared by coating the surface of anodized alumina with electroactive polymers using vapor phase polymerization…”
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  20. 20

    Patterning Highly Conducting Conjugated Polymer Electrodes for Soft and Flexible Microelectrochemical Devices by Khaldi, Alexandre, Falk, Daniel, Bengtsson, Katarina, Maziz, Ali, Filippini, Daniel, Robinson, Nathaniel D, Jager, Edwin W. H

    Published in ACS applied materials & interfaces (02-05-2018)
    “…There is a need for soft actuators in various biomedical applications to manipulate delicate objects such as cells and tissues. Soft actuators are able to…”
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