The introduction of B ← N coordinate bond-isoelectronic to C-C single bond-into π-systems represents a promising strategy to impart exotic redox and electrochromic properties into conjugated organic molecules and macromolecules. To achieve both reductive and oxidative activities using this strategy, a cruciform ladder-type molecular constitution was designed to accommodate oxidation-active, reduction-active, and B ← N coordination units into a compact structure. Two such compounds (BN-F and BN-Ph) were synthesized via highly efficient N-directed borylation. These molecules demonstrated well-separated, two reductive and two oxidative electron-transfer processes, corresponding to five distinct yet stable oxidation states, including a rarely observed boron-containing radical cation. Spectroelectrochemical measurements revealed unique optical characteristics for each of these reduced/oxidized species, demonstrating multicolor electrochromism with excellent recyclability. Distinct color changes were observed between each redox state with clear isosbestic points on the absorption spectra. The underlying redox mechanism was elucidated by a combination of computational and experimental investigations. Single-crystal X-ray diffraction analysis on the neutral state, the oxidized radical cation, and the reduced dianion of BN-Ph revealed structural transformations into two distinct quinonoid constitutions during the oxidation and reduction processes, respectively. B ← N coordination played an important role in rendering the robust and reversible multistage redox properties, by extending the charge and spin delocalization, by modulating the π-electron density, and by a newly established hyperconjugation mechanism.
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http://dx.doi.org/10.1021/jacs.8b11337 | DOI Listing |
IUCrdata
December 2024
E-35 Holmes Hall, Michigan State University, Lyman Briggs College, 919 E. Shaw Lane, East Lansing, MI 48825, USA.
A layered cobalt coordination polymer containing both 4-(2-carboxyl-atoeth-yl)benzoate (ceb) and 1,4-bis-(3-pyridyl-meth-yl)piperazine (3-bpmp) ligands, [Co(CHO)(CHN)(HO)] or [Co(ceb)(3-bpmp)(HO)] , was isolated and structurally characterized by single-crystal X-ray diffraction. Chain-like [Co(ceb)(HO)] units are oriented parallel to [101]. These are connected into (4,4)-grid coordination polymer layers by tethering 3-bpmp ligands.
View Article and Find Full Text PDFTheranostics
January 2025
Department of Nuclear Medicine, University Hospital Würzburg, Würzburg, Germany.
To establish the extent, distribution and frequency of in-vivo vessel wall [Ga]Ga-PentixaFor uptake and to determine its relationship with calcified atherosclerotic plaque burden (CAP) and cardiovascular risk factors (CVRF). 65 oncological patients undergoing [Ga]Ga-PentixaFor PET/CT were assessed. Radiotracer uptake (target-to-background ratio [TBR]) and CAP burden (including number of CAP sites, calcification circumference and thickness) in seven major vessel segments per patient were determined.
View Article and Find Full Text PDFSci Rep
January 2025
Postgraduate Program in Sciences Applied to Hematology, State University of Amazonas, Av. Djalma Batista, 3578-Flores, Manaus, AM, Brazil.
Polymorphisms in the MBL2 gene exon 1 can decrease serum levels of mannose-binding lectin (MBL), increasing the risk of infection in immunocompromised individuals. This study evaluated the association between the polymorphism in exon 1 of the MBL2 gene, genotypes, serum MBL levels, and infection in 122 patients with acute lymphoid leukemia (ALL). The MBL*A allele exhibited the highest frequency (0.
View Article and Find Full Text PDFBiochem Biophys Res Commun
January 2025
Laboratory of Molecular and Cellular Biochemistry, Meiji Pharmaceutical University, Kiyose, Tokyo, 204-8588, Japan. Electronic address:
WD repeat domain 74 (WDR74) is a nucleolar protein involved in the early stages of pre-60S maturation in the ribosome biogenesis pathway. In later stages, WDR74 interacts with MTR4, an RNA helicase that functions with the exosome nuclease complex, and is dissociated upon ATP hydrolysis by the chaperone-like nuclear VCP-like 2 (NVL2) AAA-ATPase. We previously reported that ATP hydrolysis-defective NVL2 causes aberrant accumulation of WDR74 on the MTR4-exosome complex at the nucleolar periphery and in the nucleoplasm and that this nuclear redistribution of WDR74 leads to the unusual cleavage of the early rRNA precursor within the internal transcribed spacer 1 sequence.
View Article and Find Full Text PDFPlants (Basel)
November 2024
State Key Laboratory of Tree Genetic and Breeding, The Research Institute of Subtropical Forestry, Chinese Academy of Forestry, Hangzhou 311400, China.
The IV subfamily of receptor-like cytoplasmic kinase (RLCK-IV), known as calcium-binding receptor-like cytoplasmic kinases (CRCKs), plays a vital role in plant signal transduction, particularly in coordinating growth and responses to abiotic stresses. However, our comprehension of CRCK genes in , a species characterized as fast-growing and pest-resistant but with drought intolerance, is limited. Here, we identify 6 members of the CRCK subfamily on a genome-wide scale in , denoted as -.
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