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Polymers that amplify a transient external stimulus into changes in their morphology, physical state, or properties continue to be desirable targets for a range of applications. Here, we report a polymer comprising an acid-sensitive, hydrolytically unstable enol ether backbone onto which is embedded -dichlorocyclopropane (DCC) mechanophores through a single postsynthetic modification. The DCC mechanophore releases HCl in response to large forces of tension along the polymer backbone, and the acid subsequently catalyzes polymer deconstruction at the enol ether sites. Pulsed sonication of a 61 kDa PDHF with 77% DCC on the backbone in THF with 100 mM HO for 10 min triggers the subsequent degradation of the polymer to a final molecular weight of less than 3 kDa after 24 h of standing, whereas controls lacking either the DCC or the enol ether reach final molecular weights of 38 and 27 kDa, respectively. The process of sonication, along with the presence of water and the existence of DCC on the backbone, significantly accelerates the rate of polymer chain deconstruction. Both acid generation and the resulting triggered polymer deconstruction are translated to bulk, cross-linked polymer networks. Networks formed via thiol-ene cross-linking and subjected to unconstrained quasi-static uniaxial compression dissolve on time scales that are at least 3 times faster than controls where the mechanophore is not covalently coupled to the network. We anticipate that this concept can be extended to other acid-sensitive polymer networks for the stress-responsive deconstruction of gels and solvent-free elastomers.
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http://dx.doi.org/10.1021/jacs.3c10153 | DOI Listing |
Org Lett
September 2025
N. D. Zelinsky Institute of Organic Chemistry, Leninsky Prospekt 47, Moscow 119991, Russian Federation.
The first radical addition to mesoionic heterocycles, enabling direct functionalization of sydnones with perfluoroalkyl groups with retention of the mesoionic structure, is described. The fluorinated sydnones were subsequently involved in the energy-transfer-mediated cycloaddition with silyl enol ethers. This approach provides efficient access to medicinally relevant perfluoroalkylated pyrazole derivatives with complete regiocontrol.
View Article and Find Full Text PDFOrg Biomol Chem
August 2025
Samara State Technical University 244, Molodogvardeyskaya st, Samara, 443100, Russian Federation.
The synthesis of a racemic and non-racemic β-ketoester of the homocamphor series was performed in a two-step sequence the formation of enol ethers using AlCl-promoted Büchner-Curtius-Schlotterbeck ring expansion of - or (+)-camphor as the starting material. A few types of chemical transformations were investigated with stereochemical implications. The synthetic potential of the synthesized β-ketoester has been demonstrated in several reactions, including diastereoselective epimerization, alkylation, functionalization, oxidative cleavage, and reactions with binucleophilic reagents or HN.
View Article and Find Full Text PDFChem Sci
August 2025
School of Chemistry and Material Sciences, Hangzhou Institute for Advanced Study, University of Chinese Academy of Sciences Hangzhou 310024 China
Despite the significant applications of fluorinated cyclobutanes in industrial and diagnostic fields, efficient methods for synthesizing these valuable fluorinated structures remain limited. Here, we report a new difluoroalkylating reagent, 2-(difluoromethylene)cyclobutyl sulfonium salts (CB-DFASs). This reagent can be readily synthesized on a gram scale in three steps from readily available cyclobutanone enol silyl ether.
View Article and Find Full Text PDFACS Org Inorg Au
August 2025
Organic Chemistry Institute, University of Münster, Correnstraße 36, Münster 48149, Germany.
In this work, a mild NaBAr-mediated electrophilic trifluoromethylation of nonactivated silyl enol ethers is reported, using an Umemoto-type chloride salt thanks to a reactivity-modulation through its counter-anion. Hence, the key to success is the catalytic generation of a highly reactive Umemoto trifluoromethylating agent with the non-coordinative BAr anion upon anion exchange initiated by catalytic amounts of the commercially available and simple NaBAr salt. This alternative method enables a selective reaction towards α-trifluoromethylated ketones under mild reaction conditions and avoids the use of stoichiometric Sn reagents, offering a practical strategy for embracing further highly demanding substrates in trifluoromethylation reactions.
View Article and Find Full Text PDFAngew Chem Int Ed Engl
September 2025
Center of Basic Molecular Science (CBMS), Department of Chemistry, Tsinghua University, Beijing, 100084, China.
Precise stereocontrol over functionalized alkenes remains a central challenge in organic synthesis. In particular, catalytic methods enabling flexible and stereodivergent synthesis of both trans-selective and cis-selective useful enol ethers are still underdeveloped. Herein, we report a manganese-catalyzed, ligand-controlled hydroalkoxylation of alkynylnitriles with alcohols under mild conditions.
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