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Structures in multi-component polymer films : their formation, observation and applications in electronics and biotechnology

Budkowski, Andrzej (author)
M. Smoluchowski Institute of Physics and Research Centre for Nanometer-Scale Science and Advanced Materials (NANOSAM) Jagiellonian University, Reymonta 4, 30-059 Krakow, Poland
Bernasik, Andrzej (author)
Faculty of Physics and Applied Computer Science, AGH-University of Science and Technology, Al. Mickiewicza 30, Krakow 30–059, Poland
Moons, Ellen, 1966- (author)
Karlstads universitet,Avdelningen för fysik och elektroteknik,Materialvetenskap
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Lekka, M (author)
The Henryk Niewodnicza¶nski Institute of Nuclear Physics Polish Academy of Sciences, Radzikowskiego 152, 31-342 Krakow, Poland
Zemla, J (author)
M. Smoluchowski Institute of Physics and Research Centre for Nanometer-Scale Science and Advanced Materials (NANOSAM) Jagiellonian University, Reymonta 4, 30-059 Krakow, Poland
Jaczewska, Justyna (author)
M. Smoluchowski Institute of Physics and Research Centre for Nanometer-Scale Science and Advanced Materials (NANOSAM) Jagiellonian University, Reymonta 4, 30-059 Krakow, Poland
Haberko, Jakub (author)
Faculty of Physics and Applied Computer Science, AGH-University of Science and Technology, Al. Mickiewicza 30, Krakow 30–059, Poland
Raczkowska, Joanna (author)
M. Smoluchowski Institute of Physics and Research Centre for Nanometer-Scale Science and Advanced Materials (NANOSAM) Jagiellonian University, Reymonta 4, 30-059 Krakow, Poland
Rysz, Jakub (author)
M. Smoluchowski Institute of Physics and Research Centre for Nanometer-Scale Science and Advanced Materials (NANOSAM) Jagiellonian University, Reymonta 4, 30-059 Krakow, Poland
Awsiuk, K (author)
M. Smoluchowski Institute of Physics and Research Centre for Nanometer-Scale Science and Advanced Materials (NANOSAM) Jagiellonian University, Reymonta 4, 30-059 Krakow, Poland
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M Smoluchowski Institute of Physics and Research Centre for Nanometer-Scale Science and Advanced Materials (NANOSAM) Jagiellonian University, Reymonta 4, 30-059 Krakow, Poland Faculty of Physics and Applied Computer Science, AGH-University of Science and Technology, Al. Mickiewicza 30, Krakow 30–059, Poland (creator_code:org_t)
Warsaw : Polish Academy of Sciences, Institute of Physics, 2009
2009
English.
In: Acta Physica Polonica. A. - Warsaw : Polish Academy of Sciences, Institute of Physics. - 0587-4246 .- 1898-794X. ; 115:2, s. 435-440
  • Journal article (peer-reviewed)
Abstract Subject headings
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  • Several strategies to form multicomponent films of functional polymers, with micron, submicron and nanometer structures, intended for plastic electronics and biotechnology are presented. These approaches are based on film deposition from polymer solution onto a rotating substrate (spin-casting), a method implemented already on manufacturing lines. Film structures are determined with compositional (nanometer) depth profiling and (submicron) imaging modes of dynamic secondary ion mass spectrometry, near-field scanning optical microscopy (with submicron resolution) and scanning probe microscopy (revealing nanometer features). Self-organization of spin-cast polymer mixtures is discussed in detail, since it o®ers a one-step process to deposit and align simultaneously domains, rich in di®erent polymers, forming various device elements: (i) Surface segregation drives self-stratification of nanometer lamellae for solar cells and anisotropic conductors. (ii) Cohesion energy density controls morphological transition from lamellar (optimal for encapsulated transistors) to lateral structures (suggested for light emitting diodes with variable color). (iii) Selective adhesion to substrate microtemplates, patterned chemically, orders lateral structures for plastic circuitries. (iv) Submicron imprints of water droplets (breath figures) decorate selectively micron-sized domains, and can be used in devices with hierarchic structure. In addition, selective protein adsorption to regular polymer micropatterns, formed with soft lithography after spin-casting, suggests applications in protein chip technology. An approach to reduce lateral blend film structures to submicron scale is also presented, based on (annealed) films of multicomponent nanoparticles

Subject headings

NATURVETENSKAP  -- Fysik -- Den kondenserade materiens fysik (hsv//swe)
NATURAL SCIENCES  -- Physical Sciences -- Condensed Matter Physics (hsv//eng)

Keyword

Physics
Fysik

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