Academic literature on the topic 'Functionalized maleimide'

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Journal articles on the topic "Functionalized maleimide"

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Shrestha, Tej B., Mausam Kalita, Megh Raj Pokhrel, et al. "Maleimide-Functionalized Photochromic Spirodihydroindolizines." Journal of Organic Chemistry 78, no. 5 (2012): 1903–9. http://dx.doi.org/10.1021/jo301894s.

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Wendler, Felix, Tobias Rudolph, Helmar Görls, et al. "Maleimide-functionalized poly(2-ethyl-2-oxazoline): synthesis and reactivity." Polymer Chemistry 7, no. 13 (2016): 2419–26. http://dx.doi.org/10.1039/c6py00033a.

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Poly(2-ethyl-2-oxazoline)s end-functionalized with a maleimide moiety were prepared from azide-terminated PEtOx<sub>x</sub>-N<sub>3</sub>viacopper-catalyzed azide–alkyne cycloaddition (CuAAC) with an alkyne-bearing maleimide (MI).
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Duval, Antoine, Heiko Lange, Martin Lawoko, and Claudia Crestini. "Reversible crosslinking of lignin via the furan–maleimide Diels–Alder reaction." Green Chemistry 17, no. 11 (2015): 4991–5000. http://dx.doi.org/10.1039/c5gc01319d.

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Decker, Christian, and Catherine Bianchi. "Photocrosslinking of a maleimide functionalized polymethacrylate." Polymer International 52, no. 5 (2003): 722–32. http://dx.doi.org/10.1002/pi.1119.

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Hu, Shu-Man, Chin-Yun Lee, Yu-Ming Chang, et al. "Vapor-Phase Fabrication of a Maleimide-Functionalized Poly-p-xylylene with a Three-Dimensional Structure." Coatings 11, no. 4 (2021): 466. http://dx.doi.org/10.3390/coatings11040466.

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A vapor-phase process, involving the sublimation of an ice substrate/template and the vapor deposition of a maleimide-functionalized poly-p-xylylene, has been reported to synthesize an advanced porous material, with readily clickable chemical interface properties, to perform a Michael-type addition of a maleimide functionality for conjugation with a thiol group. In contrast to the conventional chemical vapor deposition of poly-p-xylylenes on a solid surface that forms thin film coatings, the process reported herein additionally results in deposition on a dynamic and sublimating ice surface (te
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Mousa Kareem, Mohanad, and Layali Abdullah Abbas. "New prodrug polymers functionalized based on Maleimide." Journal of Physics: Conference Series 1294 (September 2019): 052031. http://dx.doi.org/10.1088/1742-6596/1294/5/052031.

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Wu, Jingbo, Yang Xi, Gregory T. McCandless, Oleg V. Kulikov, Remya Menon, and Bruce M. Novak. "Synthesis and characterization of a novel fluorinated bismaleimide via a nucleophilic addition–elimination reaction and its polymeric networks." RSC Advances 5, no. 92 (2015): 75547–54. http://dx.doi.org/10.1039/c5ra13771c.

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Swanepoel, A., I. du Preez, T. Mahlangu, A. Chetty, and B. Klumperman. "Development of bioconjugated dye-doped poly(styrene-co-maleimide) nanoparticles as a new bioprobe." Journal of Materials Chemistry B 3, no. 13 (2015): 2635–40. http://dx.doi.org/10.1039/c4tb01520g.

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Galli, Marco, Andrea Guerrini, Silvia Cauteruccio, et al. "Superparamagnetic iron oxide nanoparticles functionalized by peptide nucleic acids." RSC Advances 7, no. 25 (2017): 15500–15512. http://dx.doi.org/10.1039/c7ra00519a.

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Schmidt and Eschig. "Hydrophobilization of Furan-Containing Polyurethanes via Diels–Alder Reaction with Fatty Maleimides." Polymers 11, no. 8 (2019): 1274. http://dx.doi.org/10.3390/polym11081274.

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We describe new hydrophobic functionalized linear polyurethane resins by combining N-alkyl maleimides via the Diels–Alder reaction with linear furan-modified polyurethanes. This procedure provides the opportunity for the post-polymerization-functionalizing of polyurethanes. Access to furan-bearing polyurethanes is achieved via the reaction of a furan-containing diol, polyethylenglycol (PEG), and different diisocyanates. The furan-containing diol is obtained from the reaction of furfurylamine and two equivalents of hydroxyalkyl acrylate. The resulting furan-bearing polyurethanes are reacted wit
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Dissertations / Theses on the topic "Functionalized maleimide"

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Phelps, Edward Allen. "Bio-functionalized peg-maleimide hydrogel for vascularization of transplanted pancreatic islets." Diss., Georgia Institute of Technology, 2011. http://hdl.handle.net/1853/45899.

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Type 1 diabetes affects one in every 400-600 children and adolescents in the US. Standard therapy with exogenous insulin is burdensome, associated with a significant risk of dangerous hypoglycemia, and only partially efficacious in preventing the long term complications of diabetes. Pancreatic islet transplantation has emerged as a promising therapy for type 1 diabetes. However, this cell-based therapy is significantly limited by inadequate islet supply (more than one donor pancreas is needed per recipient), instant blood-mediated inflammatory reaction, and loss of islet viability/function dur
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Šikyňová, Martina. "Funkcionalizace polypropylenu maleimidy." Master's thesis, Vysoké učení technické v Brně. Fakulta chemická, 2020. http://www.nusl.cz/ntk/nusl-432952.

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Diploma thesis deals with preparation of polypropylene functionalized by maleimides, based on the reaction between maleic anhydride and amine. The overview of functionalization of polypropylene by maleic anhydride by reactive extrusion and routes for the synthesis and utilization of maleimides are contained in the theoretical part. Samples of maleimide-functionalized polypropylene were prepared by reactive extrusion using low molecular weight amines (aniline and 4-aminophenol) and hight molecular weight polyether monoamines. Functionalized polypropylene samples were prepared by several methods
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Zhou, Xu. "Synthesis and characterization of rigid nanoporous hypercrosslinked copolymers for high surface area materials with potential hydrogen storage capabilities." Thesis, Virginia Tech, 2010. http://hdl.handle.net/10919/78048.

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Hydrogen storage remains a major technological barrier to the widespread adoption of hydrogen as an energy source. Organic polymers offer one potential route to useful hydrogen storage materials. Recently, Frechet and his coworkers described a series of hypercrosslinked polymers with high surface area and studied their surface properties and hydrogen storage capacities. McKeown and his coworkers studied a class of materials termed Polymers of Intrinsic Microporosity (PIMs) which are also based on a "hypercrosslinked" concept. We enchained N-substituted maleimide and functionalized stilbene alt
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Zhou, Xu. "Synthesis and Characterization of Nanoporous Copolymers with Potential Gas Storage Applications." Diss., Virginia Tech, 2013. http://hdl.handle.net/10919/51669.

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Nanoporous organic polymers, including hypercrosslinked polymers (HCPs), covalent organic frameworks (COFs), polymers of intrinsic microporosity (PIMs), and conjugated microporous polymers (CMPs) etc., are considered good candidates for potential gas storage and gas separation applications. Porosities and surface areas of a series of semirigid alternating copolymers, which contained tert-butyl carboxylate-functionalized stilbene or tert-butyl carboxylate-functionalized styrene, and maleic anhydride or tert-butyl carboxylate-functionalized phenyl maleimide, were investigated using nitrogen sor
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Tsai, Meng-Yu, and 蔡孟諭. "Vapor-based synthesis of maleimide-functionalized coating for biointerface engineering." Thesis, 2013. http://ndltd.ncl.edu.tw/handle/96569554239447099411.

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碩士<br>國立臺灣大學<br>化學工程學研究所<br>102<br>The first maleimide-functionalized poly-p-xylylene is synthesized via chemical vapor deposition (CVD) polymerization from 4-N-maleimidomethyl-[2,2]paracyclophane on various substrates. Coated substrates are readily available to perform thiol–maleimide click reaction under mild conditions. Designed surfaces are highlighted in low-protein-fouling modification as well as manipulated attachments and growth of bovine arterial endothelial cells. The availability of the maleimide functionality is further exploited in combination with alkynyl moiety, and the direct s
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Tsai, Ya-Ting, and 蔡亞庭. "Chemically and Topologically Controlled Cell Differentiation Based on Maleimide-Functionalized Parylene." Thesis, 2017. http://ndltd.ncl.edu.tw/handle/s7aa9t.

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碩士<br>國立臺灣大學<br>化學工程學研究所<br>105<br>In addition to widely adopted cell pattern by controlling cell attachment, the patterned formation of cell proliferation and differentiation is demonstrated by precisely defined interface chemistry and spatial topology. The interface platform is created by using a maleimide-functionalized parylene coating, which provides two route-controlled conjugation accessibility including maleimide-thiol coupling reaction and thiol-ene click reaction, both with high reaction specificity and can proceed under mild conditions, that the coating technology is a prime tool fo
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Wenny and 張銘芳. "Enhanced Cell Differentiation of Surface Modification Based on Maleimide-Functionalized Coatings." Thesis, 2019. http://ndltd.ncl.edu.tw/handle/f66p68.

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碩士<br>國立臺灣大學<br>化學工程學研究所<br>107<br>Modifications of advanced biomaterials to enable the manipulations of stem cell differentiation and proliferation are significant in regenerating and repairing damaged tissue. To overcome some limitations in many approaches such as substrate materials, different treatment requirements for dissimilar differentiations, biocompatibility of the modified surface, and/or necessity of additional techniques for better stem cell adhesion, here we introduce a chemically defined surface modification to mirror stem cell microenvironment in vivo based on maleimide-functio
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Huang, Jian-Lun, and 黃建綸. "Synthesis and Photovoltaic Study of Nano-Carbon Material Functionalized Maleimide-Thiophene Copolymers." Thesis, 2011. http://ndltd.ncl.edu.tw/handle/17260879645193920549.

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碩士<br>國立雲林科技大學<br>化學工程與材料工程研究所<br>99<br>In this study we fabricated a series of polymer solar cells (PSCs) incorporating blends of the poly(3-hexylthiophene) P3HT, multiwalled carbon nanotubes (MWCNTs) functionalized with the 2-hydroxyethyl–presenting maleimide-thiophene copolymer PTM21-OH (PTM21-CNT)/graphene oxide (GO) functionalized with the 2-hydroxyethyl–presenting maleimide-thiophene copolymer PTM21-OH (PTM21-GS), and the fullerene derivative [6,6]-phenyl-C61-butyric acid methyl ester (PCBM) in various weight ratios. PTM21-CNT and PTM21-GS behaved as an efficient compatibilizer for P3HT
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Book chapters on the topic "Functionalized maleimide"

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Pandey, Arpita, Narendra Singh Chundawat, and Narendra Pal Singh Chauhan. "Maleimide and acrylate based functionalized polymers." In Advanced Functional Polymers for Biomedical Applications. Elsevier, 2019. http://dx.doi.org/10.1016/b978-0-12-816349-8.00009-6.

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Shahinian, Serge, and John R. Silvius. "High-Yield Coupling of Antibody Fab′ Fragments to Liposomes Containing Maleimide-Functionalized Lipids." In Methods in Enzymology. Elsevier, 2004. http://dx.doi.org/10.1016/s0076-6879(04)87001-0.

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Conference papers on the topic "Functionalized maleimide"

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Helmecke, T., D. Hahn, M. F. Maitz, and C. Werner. "Activity of Maleimide Functionalized Unfractionated and Low Molecular Weight Heparins." In 63rd Annual Meeting of the Society of Thrombosis and Haemostasis Research. Georg Thieme Verlag KG, 2019. http://dx.doi.org/10.1055/s-0039-1680240.

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