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Novel pyridine-containing linear and branched polyimides (Li-PIs and Br-PIs) were prepared by aromatic diamine and triamine monomers. The fluorinated, non-fluorinated and trifunctional pyridine-based monomers, 4-(4-(trifluoromethylphenyl))-2,6-bis(4-aminophenyl)pyridine (FDAPP), 4-phenyl-2,6-bis(4-aminophenyl)pyridine (DAPP) and 4,4',4"-(pyridine-2,4,6-triyl)tribenzenamine (TAPP) amino compounds were synthesized by a modified Chichibabin reaction of different benzaldehydes and p-nitroacetophenone, followed by a reduction of the resulting nitro compounds with hydrazine monohydrate. Functional amine monomers were used to synthesize a series of pyridine-containing linear and branched polyimides, by polycondensation with aromatic dianhydride in N-Methyl-2-pyrrolidone (NMP) via the conventional two-step method. The obtained novel polyimides (PIs) exhibited good solubility in common organic solvents, such as m-Cresol, NMP, DMF, DMSO and DMAc. Moreover, obtained PI films were flexible and showed excellent thermal stability, with the glass transition temperature (T(g)) of 264-331 degrees C and the temperature at 10% weight loss of 580-620 degrees C in a nitrogen atmosphere. The protonated polymer showed UV-vis absorption in the region of 200-400 nm, good optical transparency with the cut-off wave lengths of 372-392 nm, as well as a low dielectric constant (ε) in the range of 3.897-4.276 at 1 MHz. Moreover, the resulted PIs derived from DAPP, FDAPP and TAPP were compared on the basis of fluorine functionality with non-fluorinated parallels, and the effect of branching units was compared with linear polymers.
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http://dx.doi.org/10.1166/jnn.2015.11444 | DOI Listing |
J Colloid Interface Sci
September 2025
School of Chemistry and Chemical Engineering, Guangdong Provincial Key Lab of Green Chemical Product Technology, South China University of Technology, Guangzhou 510640, China. Electronic address:
Fluorine (F)-doped carbon materials (FCMs) were one-pot synthesized and applied as the catalysts for the cycloaddition of carbon dioxide (CO) towards the cyclic carbonate for the first time. In this process, F dopants and oxygen (O)-containing groups on the carbon surface played a key role in enhancing the activity. The FCM synthesized at 500 °C (FCM-500) with 5.
View Article and Find Full Text PDFACS Appl Mater Interfaces
September 2025
School of Material Science and Engineering, Beijing University of Chemical Technology, 15 North Third Ring Road, Chaoyang, Beijing 100029, China.
The construction of perfluoropolyether (PFPE) slippery liquid-infused porous surfaces (SLIPS) on gold coatings is one of the most effective strategies for bestowing anticoagulation and antimicrobial properties on the material. However, the poor chemical affinity between fluorinated porous precursors and gold substrates causes the agglomeration of nanostructures, resulting in uneven nanoporous morphology and accelerating lubricant leakage. Simultaneously, the weak interfacial adhesion between the nanostructures and the substrate may lead to the detachment of nanostructures under blood circulation.
View Article and Find Full Text PDFJ Labelled Comp Radiopharm
September 2025
State Key Laboratory of Holistic Integrative Management of Gastrointestinal Cancers, Beijing Key Laboratory of Research, Investigation and Evaluation of Radiopharmaceuticals, NMPA Key Laboratory for Research and Evaluation of Radiopharmaceuticals (National Medical Products Administration), Departmen
A peptide-based, hypoxia-inducible factor-1 α (HIF-1α) specific PET tracer for tumor hypoxia imaging is reported. It was prepared with a rapid AlF labeling method with high stability. AlF-CLLFVY specifically binds to HIF-1α with high affinity and shows higher uptake in cells under hypoxia.
View Article and Find Full Text PDFACS Nano
September 2025
Institut National de la Recherche Scientifique (INRS), Center Énergie Matériaux Télécommunications, Varennes, Québec J3X 1P7, Canada.
Owing to its chemical stability and molecular-level structural tunability, the molecular electrocatalyst cobalt phthalocyanine (CoPc) demonstrates significant potential for the electrochemical reduction of CO (CORR). However, the specific catalytic reaction process of CORR and the dynamic structural evolution mechanisms of CoPc remain a contentious subject. Elucidating the reaction pathways of CO electroreduction to CO and tracking structural evolution pose substantial challenges.
View Article and Find Full Text PDFJ Am Chem Soc
September 2025
Department of Chemical Engineering, Tsinghua University, Beijing 100084, China.
Molecular engineering of electrolytes for practical high-power and high-energy lithium metal batteries (LMBs) is a significant challenge due to the difficulty of simultaneously achieving high Li transport efficiency, minimal gas evolution, and stable cathode-electrolyte and anode-electrolyte interphases (CEI and SEI, respectively), with low charge-transfer resistance. Here, we introduce a fluorinated asymmetric lithium salt, lithium (2-(2-(2,2-difluoroethoxy)ethoxy)ethyl) ((trifluoromethyl)sulfonyl)amide (LiFOA), designed to optimize electrolyte physicochemical/electrochemical properties for stable LMB pouch cells under fast cycling conditions. LiFOA features a Li-affinitive side chain, which folds up and suppresses anion migration, resulting in a significantly heightened Li transference number ().
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