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Luminita Cianga

Researcher at Istanbul Technical University

Publications -  27
Citations -  718

Luminita Cianga is an academic researcher from Istanbul Technical University. The author has contributed to research in topics: Copolymer & Polymerization. The author has an hindex of 13, co-authored 25 publications receiving 620 citations. Previous affiliations of Luminita Cianga include Istanbul University.

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Review paper: Progress in the Field of Conducting Polymers for Tissue Engineering Applications

TL;DR: This review focuses on one of the most exciting applications area of conjugated conducting polymers, which is tissue engineering and strategies used for the biocompatibility improvement of this class of polymers and also the integrated novel technologies for smart scaffolds generation such as micropatterning, electrospinning, self-assembling are emphasized.
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Synthesis and characterization of maleimide (Co)polymers with pendant benzoxazine groups by photoinduced radical polymerization and their thermal curing

TL;DR: A maleimide monomer with benzoxazine and nitrile functionalities, 1-[3]-cyano-phenyl)-3,4-dihydro-2H-benzo[e] [1,3]oxazine-6-yl]-maleimide (MI-Bz-4CN), was prepared using N-(4-hydroxyphenylmaleimides) (HPMI), formaldehyde, and 4-aminobenzonitrile, and photoinduced radical polymerization was employed to prepare the alternating copolymers
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Synthesis and characterization of alternating copolymers of thiophene-containing N-phenyl maleimide and styrene by photoinduced radical polymerization and their use in electropolymerization

TL;DR: In this paper, photoinduced radical polymerization was employed to prepare the alternating copolymers of MBThi with styrene (St) at room temperature using ω,ω-dimethoxy-ω-phenylacetophenone (DMPA) as photoinitiator.
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Electrochromic properties and electrochromic device application of copolymer of N‐(4‐(3‐thienyl methylene)‐oxycarbonylphenyl)maleimide with thiophene

TL;DR: In this article, a new copolymer of N-(4-(3-thienyl methylene)-oxycarbonylphenyl)maleimide (MBThi) with thiophene [P(MBThI-co-Th)] was synthesized electrochemically in the presence of tetrabutylammonium tetrafluoroborate as the supporting electrolyte, in acetonitrile/borontrifluoride ethylether solvent mixture.
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Hybrid materials consisting of an all-conjugated polythiophene backbone and grafted hydrophilic poly(ethylene glycol) chains

TL;DR: In this article, an all-conjugated polythiophene backbone and well-defined poly(ethylene glycol) (PEG) grafted chains were prepared by anodic polymerization of chemically synthesized macromonomers.