Academic literature on the topic 'RAFT photo-polymerization'

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Journal articles on the topic "RAFT photo-polymerization"

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Hartlieb, Matthias. "Photo‐Iniferter RAFT Polymerization." Macromolecular Rapid Communications 43, no. 1 (2021): 2100514. http://dx.doi.org/10.1002/marc.202100514.

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Hartlieb, Matthias. "Photo‐Iniferter RAFT Polymerization." Macromolecular Rapid Communications 43, no. 1 (2022): 2270003. http://dx.doi.org/10.1002/marc.202270003.

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Li, Jiajia, Xiangqiang Pan, Na Li, Jian Zhu, and Xiulin Zhu. "Photoinduced controlled radical polymerization of methyl acrylate and vinyl acetate by xanthate." Polymer Chemistry 9, no. 21 (2018): 2897–904. http://dx.doi.org/10.1039/c8py00050f.

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Jiang, Ruming, Meiying Liu, Qiang Huang, et al. "Fabrication of multifunctional fluorescent organic nanoparticles with AIE feature through photo-initiated RAFT polymerization." Polymer Chemistry 8, no. 47 (2017): 7390–99. http://dx.doi.org/10.1039/c7py01563a.

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Zhang, Junle, Mengya Li, Yanjie He, et al. "From 0-dimension to 1-dimensions: Au nanocrystals as versatile plasmonic photocatalyst for broadband light induced RAFT polymerization." Polymer Chemistry 12, no. 16 (2021): 2439–46. http://dx.doi.org/10.1039/d1py00088h.

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Quan, Qinzhi, Honghong Gong, and Mao Chen. "Preparation of semifluorinated poly(meth)acrylates by improved photo-controlled radical polymerization without the use of a fluorinated RAFT agent: facilitating surface fabrication with fluorinated materials." Polymer Chemistry 9, no. 30 (2018): 4161–71. http://dx.doi.org/10.1039/c8py00990b.

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7

An, Nankai, Xi Chen, and Jinying Yuan. "Non-thermally initiated RAFT polymerization-induced self-assembly." Polymer Chemistry 12, no. 22 (2021): 3220–32. http://dx.doi.org/10.1039/d1py00216c.

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This review summarizes the recent non-thermal initiation methods in RAFT mediated polymerization-induced self-assembly (PISA), including photo-, redox/oscillatory reaction-, enzyme- and ultrasound wave-initiation.
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Wang, Wulong, Sheng Zhong, Guicheng Wang, Hongliang Cao, Yun Gao, and Weian Zhang. "Photo-controlled RAFT polymerization mediated by organic/inorganic hybrid photoredox catalysts: enhanced catalytic efficiency." Polymer Chemistry 11, no. 18 (2020): 3188–94. http://dx.doi.org/10.1039/d0py00171f.

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Photo-controlled RAFT polymerization mediated by an organic/inorganic hybrid photoredox catalyst (ZnTPP–POSS) was performed and showed enhanced catalytic efficiency compared with the ZnTPP photocatalyst.
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Chen, Mao, Honghong Gong, and Yu Gu. "Controlled/Living Radical Polymerization of Semifluorinated (Meth)acrylates." Synlett 29, no. 12 (2018): 1543–51. http://dx.doi.org/10.1055/s-0036-1591974.

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Fluorinated polymers are important materials for applications in many areas. This article summarizes the development of controlled/living radical polymerization (CRP) of semifluorinated (meth)acrylates, and briefly introduces their reaction mechanisms. While the classical CRP such as atom transfer radical polymerization (ATRP), reversible addition-fragmentation chain transfer (RAFT) polymerization and nitroxide-mediated radical polymerization (NMP) have promoted the preparation of semifluorinated polymers with tailor-designed architectures, recent development of photo-CRP has led to unpreceden
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Cabannes-Boué, Benjamin, Qizhi Yang, Jacques Lalevée, Fabrice Morlet-Savary, and Julien Poly. "Investigation into the mechanism of photo-mediated RAFT polymerization involving the reversible photolysis of the chain-transfer agent." Polymer Chemistry 8, no. 11 (2017): 1760–70. http://dx.doi.org/10.1039/c6py02220k.

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A new dithiocarbamate with a N-carbazole Z group is synthesized and investigated as a chain-transfer agent (CTA) in a photo-mediated RAFT polymerization mechanism involving its partial and reversible photolysis.
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Dissertations / Theses on the topic "RAFT photo-polymerization"

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Allegrezza, Michael LeGrande. "Mechanistic Insight Into Photo-Polymerization Techniques Through Kinetic Analysis." Miami University / OhioLINK, 2020. http://rave.ohiolink.edu/etdc/view?acc_num=miami1605182244121264.

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Ikkene, Djallal. "Glyco-nanostructures formulées via autoassemblage induit par photo-polymérisation RAFT en dispersion aqueuse." Electronic Thesis or Diss., Université de Lorraine, 2022. http://www.theses.fr/2022LORR0035.

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Les nano-objets polymères obtenus par auto-assemblage de copolymères amphiphiles intéressent les chercheurs en nanomédecine, qui envisagent de les employer comme systèmes de délivrance de médicaments (SDMs). Les objets de morphologie vésiculaire, nommée polymersomes, sont particulièrement attractifs car leur morphologie compartimentale permet d’encapsuler simultanément des principes actifs hydrophiles et hydrophobes. Les glycopolymères amphiphiles (GPAs), copolymères amphiphiles associant un polysaccharide hydrophile et une partie polymère hydrophobe, sont des candidats potentiels pour produir
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