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Novais, R. M. ; Simon, F. ; Pötschke, P. ; Villmow, T. ; Covas, J. A. ; Paiva, M. C.
Poly(lactic acid) composites with poly(lactic acid)-modified carbon nanotubes more
Journal of Polymer Science: Part A: Polymer Chemistry 51 (2013) 3740-3750
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Socher, R. ; Jakisch, L. ; Krause, B. ; Oertel, U. ; Voit, B. ; Pötschke, P.
Interfacial chemistry using a bifunctional coupling agent for enhanced electrical properties of carbon nanotube based composites more
Polymer 54 (2013) 5391-5398
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Dai, Z. ; Gao, Y. ; Lui, L. ; Pötschke, P. ; Yang, J. ; Zhang, Z.
Creep-resistant behavior of MWCNT-polycarbonate melt spun nanocomposite fibers at elevated temperature more
Polymer 54 (2013) 3723-3729
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Parameswaranpillai, J. ; George, A. ; Pionteck, J. ; Thomas, S.
Investigation of cure reaction, rheology, volume shrinkage and thermomechanical properties of nano-TiO2 filled epoxy/DDS composites more
Journal of Polymers 2013 (2013) ID 183463, 17 pages
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Sathyanarayana, S. ; Hübner, Ch. ; Diemert, J. ; Pötschke, P. ; Henning, F.
Influence of peroxide addition on the morphology and properties of polypropylene - multiwalled carbon nanotube nanocomposites more
Composites Science and Technology 84 (2013) 78-85
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Swiety-Pospiech, A. ; Wojnarowska, Z. ; Hensel-Bielowka, S. ; Pionteck, J. ; Paluch, M.
Effect of pressure on decoupling of ionic conductivity from structural relaxation in hydrated protic ionic liquid, lidocaine HCL more
Journal of Chemical Physics 138 (2013) 204502
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Beichel, W. ; Yu, Yang ; Dlubek, G. ; Krause-Rehberg, R. ; Pionteck, J. ; Pfefferkorn, D. ; Bulut, S. ; Bejan, D. ; Friedrich, C. ; Krossing, I.
Free volume in ionic liquids: a connection of experimentally accessible observables from PALS and PVT experiments with the molecular structure from XRD data more
Physical Chemistry, Chemical Physics 15 (2013) 8821-8830
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Pötschke, P. ; Villmow, T. ; Krause, B.
Melt mixed PCL/MWCNT composites prepared at different rotation speeds: characterization of rheological, thermal, and electrical properties, molecular weight, MWCNT macrodispersion, and MWCNT length distribution more
Polymer 54 (2013) 3071-3078
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Piana, F. ; Pionteck, J.
Effect of the melt processing conditions on the conductive paths formation in thermoplastic polyurethane / expanded graphite (TPU/EG) composites more
Composites Science and Technology 80 (2013) 39-46
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Panamoottil, S. M. ; Pötschke, P. ; Lin, R. J. T. ; Bhattacharyya, D. ; Fakirov, S.
Conductivity of microfibrillar polymer-polymer composites with CNT-loaded microfibrils or compatibilizer: a comparative study more
eXPRESS Polymer Letters 7 (2013) 607-620
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Krause, B. ; Mende, M. ; Petzold, G. ; Boldt, R. ; Pötschke, P.
Characterization of dispersability of industrial nanotube materials and their length distribution before and after melt processing more
RSC Press (2013) 212-233
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Jyotishkumar, P. ; Logakis, E. ; George, S. M. ; Pionteck, J. ; Häußler, L. ; Häßler, R. ; Pissis, P. ; Thomas, S.
Preparation and properties of multiwalled carbon nanotube/epoxy-amine composites more
Journal of Applied Polymer Science 127 (2013) 3063-3073
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Jyotishkumar, P. ; Pionteck, J. ; Thomas, S. ; Moldenears, P.
Preparation and properties of TiO2 filled poly(acrylonitrile-butadiene-styrene)/epoxy hybrid composites more
Journal of Applied Polymer Science 127 (2013) 3159-3168
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Jyotishkumar, P. ; Abraham, E. ; George, S. M. ; Elias, E. ; Pionteck, J. ; Moldenears, P. ; Thomas, S.
Preparation and properties of MWCNTs/poly(acrylonitrile-styrene-butadiene)/epoxy hybrid composites more
Journal of Applied Polymer Science 127 (2013) 3093-3103
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Pötschke, P. ; Krause, B. ; Buschhorn, S. ; Köpke, U. ; Müller, M. T. ; Villmow, T. ; Schulte, K.
Improvement of carbon nanotube dispersion in thermoplastic composites using a three roll mill at elevated temperatures more
Composites Science and Technology 74 (2013) 78-84
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Thomas, R. ; Sinturel, Ch. ; Pionteck, J. ; Puliyalil, H. ; Thomas, S.
In-situ cure and cure kinetic analysis of a liquid rubber modified epoxy resin more
Industrial & engineering chemistry research 51 (2012) 12178-12191
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Koperwas, K. ; Grzybowski, A. ; Grzybowska, K. ; Wojnarowska, Z. ; Pionteck, J. ; Sokolov, J. ; Paluch, M.
Pressure coefficient of the glass transition temperature in the thermodynamic scaling regime more
Physical Review / E 86 (2012) 041502
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Chakraborty, S. ; Pionteck, J. ; Krause, B. ; Banerjee, S. ; Voit, B.
Influence of different carbon nanotubes on the electrical and mechanical properties of melt mixed poly(ether sulfone)-multi walled carbon nanotube composites more
Composites Science and Technology 72 (2012) 1933-1940
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Jyotishkumar, P. ; Pionteck, J. ; Häßler, R. ; Adam, G. ; Thomas, S.
Poly(acrylonitrile-butadiene-styrene) modified epoxy - amine systems analyzed by FTIR and modulated DSC more
Journal of Macromolecular Science Part B - Physics 51 (2012) 1425-1436
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Hänsch, S. ; Socher, R. ; Pospiech, D. ; Voit, B. ; Harre, K. ; Pötschke, P.
Filler dispersion and electrical properties of polyamide 12/MWCNT-nanocomposites produced in reactive extrusion via anionic ring-opening polymerization more
Composites Science and Technology 72 (2012) 1671-1677
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Pegel, S. ; Villmow, T. ; Kasaliwal, G. ; Pötschke, P.
Polymer-carbon nanotube composites: melt processing, properties and applications more
Hanser Verlag (2012) Chapter 5, 145-192
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Swiety-Pospiech, A. ; Wojnarowska, Z. ; Pionteck, J. ; Pawlus, S. ; Grzybowski, A. ; Hensel-Bielowka, S. ; Grzybowska, K. ; Szulc, A. ; Paluch, M.
High pressure study of protic ionic liquid lidocaine hydrochloride: decoupling, thermodynamic scaling, and role of thermal and density fluctuation in molecular dynamics more
Journal of Chemical Physics 136 (2012) 224501
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Fan, Q. ; Qin, Z. ; Gao, S.-L. ; Wu, Y. ; Pionteck, J. ; Mäder, E. ; Zhu, M.
The use of a carbon nanotube layer on a polyurethane multifilament substrate for monitoring strains as large as 400% more
Carbon 50 (2012) 4085-4092
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Müller, M. ; Krause, B. ; Pötschke, P.
A successful approach to disperse MWCNTs in polyethylene by melt mixing using polyethylene glycol as additive more
Polymer 53 (2012) 3079-3083
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Villmow, T. ; John, A. ; Pötschke, P. ; Heinrich, G.
Polymer/carbon nanotube composites for liquid sensing: Selectivity against different solvents more
Polymer 53 (2012) 2908-2918