Direct Heteroarylation Polymerization (DHAP) is becoming a valuable alternative to classical polymerization methods being used to synthesize π-conjugated polymers for organic electronics applications. In previous work, we showed that theoretical calculations on activation energy (E) of the C⁻H bonds were helpful to rationalize and predict the selectivity of the DHAP. For readers' convenience, we have gathered in this work all our previous theoretical calculations on E and performed new ones. Those theoretical calculations cover now most of the widely utilized electron-rich and electron-poor moieties studied in organic electronics like dithienyl-diketopyrrolopyrrole (DT-DPP) derivatives. Theoretical calculations reported herein show strong modulation of the E of C⁻H bond on DT-DPP when a bromine atom or strong electron withdrawing groups (such as fluorine or nitrile) are added to the thienyl moiety. Based on those theoretical calculations, new cyanated dithienyl-diketopyrrolopyrrole (CNDT-DPP) monomers and copolymers were prepared by DHAP and their electro-optical properties were compared with their non-fluorinated and fluorinated analogues.
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http://dx.doi.org/10.3390/molecules23092324 | DOI Listing |
Small
March 2025
College of Materials Science and Engineering, Fuzhou University, Fuzhou, 350108, China.
The sluggish reaction kinetics and formidable shuttle effect of soluble lithium polysulfides (LiPSs) are thorny problems for the future industrialization of lithium-sulfur (Li-S) batteries. Therefore, exploring efficient electrocatalysts to capture LiPSs and accelerate their conversion is highly desirable yet tremendously challenging. Herein, a high-efficiency Bi/BiO/VMoN@rGO electrocatalyst with multifunctional active sites and multilevel heterointerfaces is elaborately designed for Li-S batteries.
View Article and Find Full Text PDFBiophys J
March 2025
Institute for Theoretical Physics, Heidelberg University, Heidelberg, Germany; BioQuant, Heidelberg University, Heidelberg, Germany. Electronic address:
Measuring co-localization of different types of molecules is essential to understand molecular organization in biological systems. The pair cross-correlation (PCC) function computed from two-color microscopy images provides a measure of co-localization between differently labeled molecules. Here, we compute a theoretical expression for the PCC function between two molecules using two-dimensional Gaussian distributions as the effective point spread functions for single molecules.
View Article and Find Full Text PDFInorg Chem
March 2025
Luminescent Materials Laboratory, DB, University of Verona, and INSTM, UdR Verona, Verona 37134, Italy.
In this contribution, we present new NIR-CPL/CD active Yb(III) complexes, which are synthesized by combining two ligands characterized by different types of chirality: central and axial chirality. The ligand bearing central chirality is represented by the neutral -,'-bis(2-pyridylmethylidene)-1,2-(, or ,) cyclohexanediamine (), whereas the axial ligand is 1,1'-binaphthyl-2,2'-diol (BINOL-H). A combined H NMR, thermodynamic (spectrophotometric titrations), and theoretical (DFT structural calculations) study is presented, revealing the high stability in the methanol solution of the homochiral -symmetric anionic [Yb(BINOL)] complexes, in which the two labile BINOLate molecules exhibit the same stereochemistry ( or ).
View Article and Find Full Text PDFAngew Chem Int Ed Engl
March 2025
Nankai University, College of Chemistry, No.94 Weijin Road, 300071, Tianjin, CHINA.
Covalent organic frameworks (COFs) have been regarded as promising cathode materials for lithium batteries. However, they generally show low practical capacity. Here we report the design, preparation, and battery application of a highly crystalline two-dimensional truxenone-based COF (TRO-BT-COF) with rich redox active sites, realizing a high practical capacity.
View Article and Find Full Text PDFChem Asian J
March 2025
Universität Würzburg: Julius-Maximilians-Universitat Wurzburg, Inorganic Chemistry, GERMANY.
We report the synergistic use of Pd(OAc)₂ and Ag₂O for the direct C-H arylation of polyfluoroarenes with aryl iodides in DMF as the solvent. This method is straightforward, can be conducted in air, and does not require additional ligands, yielding fluorinated unsymmetrical biaryl products in up to 99%. Experimental studies and DFT calculations suggest that the formation of [(DMF)2PdII(C6F5)2] in DMF as a coordinating solvent does not inhibit the reaction, as the Pd complex reacts with aryl iodides by oxidative addition upon dissociation of a single DMF ligand to form [(DMF)PdIV(C6F5)2(Ar)(I)] before the desired arylation product is released.
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