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Multicomponent spiropolymerization of diisocyanides, alkynes and carbon dioxide for constructing 1,6-dioxospiro[4,4]nonane-3,8-diene as structural units under one-pot catalyst-free conditions

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TLDR
In this paper, a novel multicomponent spiropolymerization was developed by using diisocyanides, alkynes and CO2 based on catalyst-free one-pot polymerization under mild experimental conditions.
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This article is published in Polymer Chemistry.The article was published on 2018-11-27. It has received 19 citations till now. The article focuses on the topics: Polymerization & Nonane.

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Advanced functional polymer materials

TL;DR: The research on advanced functional polymers is being driven by the fast-growing demand for new functional materials that can be used in revolutionary technologies as mentioned in this paper, which can be endowed with functions by using certain special preparation methods or by introducing functional groups or fillers into materials.
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MDM2-Associated Clusterization-Triggered Emission and Apoptosis Induction Effectuated by a Theranostic Spiropolymer.

TL;DR: The combined results from solution and cell-based cluster-triggered emission studies, docking, protein expression experiments and cytotoxicity data strongly support the MDM2-binding hypothesis and indicate a potential application as a fluorescent cancer marker as well as therapeutic for this spiropolymer.
Journal ArticleDOI

Functional Isocyanide-Based Polymers

TL;DR: Progress mainly made for the design of isocyanide monomers, exploration of new catalysts, and optimization of reaction conditions are discussed, which suggest that polymerization with isOCyanide chemistry can be implemented in diverse functional macromolecules and materials.
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Synthesis and Characterization of Poly(iminofuran-arylene) Containing Bromomethyl Groups Linked at the 5-Position of a Furan Ring via the Multicomponent Polymerizations of Diisocyanides, Dialkylacetylene Dicarboxylates, and Bis(2-bromoacetyl)biphenyl

TL;DR: In this article, a catalyst-free multicomponent polymerization (MCP) was developed for the in situ construction of iminofuran-arylene-containing polymers (PIFAs) with high molecular weights (Mw up to 24
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Green Monomer of CO 2 and Alkyne-based Four-component Tandem Polymerization toward Regio- and Stereoregular Poly(aminoacrylate)s

TL;DR: In this article, a facile CO2 and alkyne-based one-pot, two-step, four-component tandem polymerization was successfully established, and the polymerization of CO2, diynes, alkyl dihalides, and primary/secondary amines can proceed under mild reaction conditions and regio-and stereoregular poly(aminoacrylate)s with good solubility and thermal stability were obtained in high yields.
References
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The pivotal role of perceived scientific consensus in acceptance of science

TL;DR: The authors showed that information about scientific consensus increases acceptance of anthropogenic global warming and neutralizes the effect of worldviews, which is not clear if public perception of consensus overrides worldviews known to foster rejection of climate change.
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Introducing multicomponent reactions to polymer science: Passerini reactions of renewable monomers.

TL;DR: The results clearly demonstrate that the Passerini-3CR offers an interesting new access to monomers and polymers and thus broadens the synthetic portfolio of polymer science.
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A Spirobifluorene-Based Polymer of Intrinsic Microporosity with Improved Performance for Gas Separation

TL;DR: A highly gas-permeable polymer with enhanced selectivities is prepared using spirobifluorene as the main structural unit, which facilitates gas permeability data that lie above the 2008 Robeson upper bound, which is the universal performance indicator for polymer gas separation membranes.
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