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  • Self-Organized Morphology in Nanostructured Materials | Katharina Al-Shamery | Springer.
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Krishna , Anup K. Gangopadhyay , Jeremy H. Strader , Ramki Kalyanaraman. Self-organized metal nanostructures through laser-interference driven thermocapillary convection Christopher P. European Polymer Journal , 94 , Barud, Rafael L. Oliveira, Renata A.

Amaral, Agnieszka Tercjak.

Self Organized Morphology in Nanostructured Materials Springer Series in Materials Science

Carbohydrate Polymers , , Nisa V. Salim, Jyotishkumar Parameswaranpillai, Bronwyn L.

Fox, Nishar Hameed. Shankar P. Khatiwada, C. Materials Today: Proceedings , 4 4 , Agnieszka Tercjak. Journal of Energy Storage , 6 , Julieta Puig, Ileana A. Schroeder, Roberto J. Evolution of morphologies of a PE-b-PEO block copolymer in an epoxy solvent induced by polymerization followed by crystallization-driven self-assembly of PE blocks during cooling. RSC Advances , 6 41 , Ileana A. Zucchi, Walter F. Nanoribbons with semicrystalline core dispersed in a visible-light photopolymerized epoxy network. Polymer , 56 , Nanostructured unsaturated polyester modified with poly[ ethylene oxide -b- propylene oxide -b- ethylene oxide ] triblock copolymer.

Polymer , 53 , Nanoscale-confined crystallization in epoxy resin and polyethylene-block-poly ethylene oxide diblock copolymer blends. European Polymer Journal , 48 , A new route to nanostructured thermosets with block ionomer complexes. Soft Matter , 8 , Vijayan, S. Amit Mandal, Arun K. Miscibility of Polythiophene-graft-poly methyl methacrylate brushes with Poly vinylidene fluoride : Morphology, Optical and Conductivity Properties. Bluma G. Lima, Adriana A. Silva, Shalimar P.

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Caplan, Fabio L. Characterization of nanostructured epoxy networks modified with isocyanate-terminated liquid polybutadiene. Nanostructures and thermomechanical properties of epoxy thermosets containing reactive diblock copolymer. Journal of Applied Polymer Science , Hanley, Yiu-Wing Mai. Reactive block copolymer modified thermosets: highly ordered nanostructures and improved properties.

Interfacially formed organized planar inorganic, polymeric and composite nanostructures.

Soft Matter , 6 , Sixun Zheng. Ternary blends of poly ethylene oxide and acrylate-based copolymers: Crystallinity, miscibility, interactions and proton conductivity. European Polymer Journal , 45 , Serrano, G. Kortaberria, P. Arruti, A. Tercjak, I. Molecular dynamics of an epoxy resin modified with an epoxidized poly styrene—butadiene linear block copolymer during cure and microphase separation processes. Polymer , 50 , Micro- and macrophase separation of thermosetting systems modified with epoxidized styrene- block -butadiene- block -styrene linear triblock copolymers and their influence on final mechanical properties.

Polymer International , 57 Macromolecular Materials and Engineering , Acta Materialia , 56 , Royston, J. Patrick A. Fairclough, Anthony J. Toughening by nanostructure.

Table of contents

Polymer , 49 , Liquid crystal alignment in electro-responsive nanostructured thermosetting materials based on block copolymer dispersed liquid crystal. Nanotechnology , 19 , Wenchun Fan, Sixun Zheng. Reaction-induced microphase separation in thermosetting blends of epoxy resin with poly methyl methacrylate -block-polystyrene block copolymers: Effect of topologies of block copolymers on morphological structures.

Nanostructures and nanoporosity in thermoset epoxy blends with an amphiphilic polyisoprene-block-poly 4-vinyl pyridine reactive diblock copolymer.

We have a dedicated site for Germany. In this volume, concepts of nonlinear dynamics and self-organization are applied to topics in materials sciences with emphasis on semiconductors, soft matter, and biomaterials. The questions addressed include how to compare ordering phenomena under nonequilibrium situations, usually called self-organized structures, with those arising under situations close to equilibrium via selfassembly. Analogies are pointed out, differences are characterized, and efforts made to discover common features in the mechanistic description of those phenomena.

Of major importance is the question of the role of spatial and temporal order, in particular, the application of concepts developed on macroscopic and microscopic scales to structure formation occurring on nanoscales, which occupies the focus of interest on the frontiers of science. JavaScript is currently disabled, this site works much better if you enable JavaScript in your browser.