Showing 541 - 560 results of 2,605 for search '"polymer"', query time: 0.09s Refine Results
  1. 541

    Building up Graphene-Based Conductive Polymer Composite Thin Films Using Reduced Graphene Oxide Prepared by γ-Ray Irradiation by Siyuan Xie, Bowu Zhang, Chunlei Wang, Ziqiang Wang, Linfan Li, Jingye Li

    Published 2013-01-01
    “…Due to the good dispersibility of the RGO in the mix solution, we built up flexible and conductive composite films based on the RGO and polymeric matrix through facile vacuum filtration and polymer coating. …”
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  2. 542

    A Novel Molecularly Imprinted Polymer for the Selective Removal of Chlorophyll from Heavily Pigmented Green Plant Extracts prior to Instrumental Analysis by Bareki Shima Batlokwa, Janes Mokgadi, Ronald Majors, Charlotta Turner, Nelson Torto

    Published 2013-01-01
    “…A novel molecularly imprinted polymer (MIP) powder designed for the selective removal of interfering chlorophyll pigment from heavily pigmented green plant extracts during pesticide residue analysis or analysis for bioactives in natural product research is reported. …”
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  3. 543

    Alkali Effect on Alkali-Surfactant-Polymer (ASP) Flooding Enhanced Oil Recovery Performance: Two Large-Scale Field Tests’ Evidence by Chen Sun, Hu Guo, Yiqiang Li, Guipu Jiang, Ruicheng Ma

    Published 2020-01-01
    “…Alkali-surfactant-polymer (ASP) flooding is very promising chemical enhanced oil recovery (EOR) technology which can make an incremental oil recovery factor (IORF) of 30% original oil in place (OOIP). …”
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  9. 549

    Investigation of Gamma Radiation Shielding in NiMnGa-Doped Multifunctional Smart Polymer Composites Using Geant4 and WinXCOM by Mediha Kök, Mustafa Ersin Pekdemir, Seçil Niksarlıoğlu, Serpil Yalçın Kuzu, Mustafa Kaya

    Published 2024-12-01
    “…This study assesses the gamma radiation shielding efficiency of polymer composites doped with varying amounts of alloy, using software to demonstrate the potential application of innovative materials in radiation protection. …”
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  10. 550

    Magnesium Bioresorbable Scaffold (BRS) Magmaris vs Biodegradable Polymer DES Ultimaster in NSTE-ACS Population—12-Month Clinical Outcome by Piotr Rola, Adrian Włodarczak, Szymon Włodarczak, Mateusz Barycki, Marek Szudrowicz, Magdalena Łanocha, Łukasz Furtan, Katarzyna Woźnica, Jan Jakub Kulczycki, Joanna Jaroszewska-Pozorska, Michalina Kędzierska, Adrian Doroszko, Maciej Lesiak

    Published 2022-01-01
    “…This pilot study evaluates the performance of a magnesium bioresorbable scaffold (Magmaris, Biotronik, Germany) in comparison to the sirolimus‐eluting bioresorbable polymer stents (BP-SES) (Ultimaster, Terumo, Japan) in the NSTE-ACS setting. …”
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  16. 556

    Indium-Free PTB7/PC71BM Polymer Solar Cells with Solution-Processed Al:ZnO Electrodes on PET Substrates by P. Fuchs, A. Paracchino, H. Hagendorfer, L. Kranz, T. Geiger, Y. E. Romanyuk, A. N. Tiwari, F. Nüesch

    Published 2016-01-01
    “…Inverted PTB7/PC71BM polymer solar cells are prepared on solution-processed Al:ZnO transparent contacts on PET substrates. …”
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  17. 557
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    Polymer interaction of the genes SHY2 and MSG1, NPH4 and IAR2 in the inheritance of the Arabidopsis thaliana (L.) Heynh. root system by S. G. Hablak

    Published 2017-04-01
    “…Our data indicate that the ability of plant roots to increase the degree of branching depends on individual genes and can be inherited through polymer gene interactions. Knowing the polymeric nature of inheritance in the root system, the length of lateral roots in the interaction of genes can be combined by crossing genes and increase the degree of branching of the roots from cultivated plants to create agrochemically effective varieties and hybrids.…”
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  19. 559
  20. 560

    Determination of Tributyltin in Seafood Based on Magnetic Molecularly Imprinted Polymers Coupled with High-Performance Liquid Chromatography-Inductively Coupled Plasma Mass Spectrometry by Hua Yang, Huien Zhang, Xiao Yan Zhu, Shi Da Chen, Lijun Liu, Daodong Pan

    Published 2017-01-01
    “…Compared with conventional imprinting polymers, this magnetic molecular imprinting polymer (MIP) displayed significantly increased and more specific adsorption. …”
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