Publications by authors named "F-H Zhang"

A poor charge transfer (CT) characteristic between FTiOPc and axial ligand C is observed due to the attraction of the C-F bonds to the electron cloud. In addition, the CT characteristic can be effectively improved by peripheral substitution of H-atoms or tetra--butyl groups, and superior one-/two-photon absorption properties can also be achieved owing to the σ-π hyperconjugation effect in tetra--butyl groups.

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Background: The long-term associations between metal mixtures in pregnancy and women's mid-life blood pressure (BP) and hypertension remain unclear.

Methods: In Project Viva (enrolled 1999-2002), we measured nonessential (arsenic, barium, cadmium, cesium, mercury, lead) and essential metals (copper, magnesium, manganese, selenium, zinc) in red blood cells, along with folate and vitamin B12 in plasma, collected during pregnancy. We measured mid-life BP from 2017 to 2021 (median age, 51.

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Proton conducting materials play a key role in various fields, and their proton conduction is profoundly restricted by the proton dissociation process. This process has two components: dissociation from acidic groups (e.g.

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The discovery of new natural products remains a cornerstone of therapeutic innovation, and effective analytical tools for rapid dereplication can significantly accelerate this process. Using Isotopic Fine Structure (IFS) mass spectrometry, we rapidly identified three new dimeric benzofluorene glycosides, lomaiviticins F-H (-), from a marine-derived sp. bacterium.

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Background: The Flow Re-Direction Endoluminal Device X (FRED X) offers several benefits over other flow-diverter devices including an antithrombotic coating, optimized in-vessel stability, and increased flexibility for easier device placement. We present a to-date experience of the safety and utility of the FRED X device in the repair of posterior and anterior circulation aneurysms.

Methods: A retrospective review was conducted on all endovascular procedures that utilized the FRED X device at our center from May 2022 to November 2023.

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Introduction: The Alzheimer's Association Global Biomarker Standardization Consortium conducted a blinded case-control study to learn which phosphorylated tau (p-tau) assays provide the largest fold-changes in Alzheimer's disease (AD) versus non-AD and show commutability in measuring patient samples and candidate certified reference materials (CRMs).

Methods: Thirty-three different p-tau assays measured paired plasma and cerebrospinal fluid (CSF) from 40 participants (25 with "AD pathology" and 15 with "non-AD pathology" by CSF amyloid beta [Aβ]42/Aβ40 and p-tau181 criteria). Four CRMs were assessed.

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Despite substantial advances in green and red metal halide perovskite light-emitting diodes (PeLEDs), blue PeLEDs, particularly deep-blue ones (defined as Commission International de l'Eclairage y coordinate (CIE) less than 0.06) that meet the latest Rec. 2020 colour gamut standard, lag dramatically behind owing to a severe phase segregation-induced electroluminescent spectral shift and low exciton utilization in broadened bandgap perovskite emitters.

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In conclusion, the distinct evolution patterns of panzootic influenza A(H5Nx) compared to A(H1N1) and A(H3N2) complicate vaccine development. Effective strategies must consider these unique patterns and the impact of pre-existing immunity. Leveraging AI-based methods for optimized antigen design is essential to mitigate the potential impact of emerging antigenically variable strains and will provide valuable insights for developing more effective vaccines to prepare for future pandemics.

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Objective: The study investigated the effects of air pollutants on the incidence of acute angle-closure glaucoma (AACG) in Hefei, China.

Methods: A combination of generalized additive models and distributed lag nonlinear models was used to explore the relationship between air pollutants and the incidence of AACG.

Results: Exposure-response curves showed that exposure to PM 2.

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Background: Activating glutamatergic neurons in the ipsilesional motor cortex can promote functional recovery after stroke. However, the underlying molecular mechanisms remain unclear. Clarifying key molecular mechanisms involved in recovery could help understand the development of neuromodulation strategies after stroke.

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Background: Approximately half of the patients with acute ischemic stroke who receive intravenous thrombolysis (IVT) do not achieve an excellent outcome. Remote ischemic conditioning (RIC) as a promising neuroprotective treatment may improve clinical outcomes in this population. This study aimed to assess the efficacy and safety of RIC in patients with IVT.

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Fifteen sesquiterpenoids, including five previously undescribed monomers with oxidative rearranged skeletons (sarglabenoids A-E, 1-5) and three previously unreported lindenane [2 + 2] dimers (sarglabenoids F-H, 6-8), alongside seven related precursors (9-15), were isolated from the root of Sarcandra glabra. The structures of these compounds were elucidated using a combination of high-resolution electrospray ionization mass spectrometry, one-dimensional and two-dimensional nuclear magnetic resonance spectroscopy, the circular dichroism exciton chirality method, electronic circular dichroism, and nuclear magnetic resonance calculations integrated with DP4+ analysis. Compounds 1 and 2 feature an unique 5/5 spiro ring system, which is likely derived from a pinacol rearrangement of precursor 14.

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The safety and cycle stability of lithium metal batteries (LMBs) under conditions of high cut-off voltage and fast charging put forward higher requirements for electrolytes. Here, a sulfonate-based deep eutectic electrolyte (DEE) resulting from the eutectic effect between solid sultone and lithium bis(trifluoromethanesulfonyl)imide without any other additives is reported. The intermolecular coordination effect triggers this eutectic phenomenon, as evidenced with nuclear magnetic resonance, and thus the electrochemical behavior of the DEE can be controlled by jointly regulating the coordination effects of F···H and Li···O intermolecular interactions.

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Rehabilitation training is believed to be an effectual strategy that can reduce the risk of dysfunction caused by spasticity. However, achieving visualization rehabilitation training for patients remains clinically challenging. Herein, we propose visual rehabilitation training system including iontronic meta-fabrics with skin-friendly and large matrix features, as well as high-resolution image modules for distribution of human muscle tension.

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Purpose To evaluate the performance of a high-dynamic-range quantitative susceptibility mapping (HDR-QSM) cardiac MRI technique to detect intramyocardial hemorrhage (IMH) and quantify iron content using phantom and canine models. Materials and Methods A free-running whole-heart HDR-QSM technique for IMH assessment was developed and evaluated in calibrated iron phantoms and 14 IMH female canine models. IMH detection and iron content quantification performance of this technique was compared with the conventional iron imaging approaches, R2*(1/T2*) maps, using measurements from ex vivo imaging as the reference standard.

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Background: Currently, validated biomarkers for assessing hemorrhagic transformation (HT) after intravenous thrombolysis (IVT) are lacking. We aimed to validate a test combining GFAP (glial fibrillary acidic protein) and UCH-L1 (ubiquitin C-terminal hydrolase-L1) to indicate the absence of HT after IVT.

Methods: We prospectively enrolled consecutive patients with stroke treated with IVT from 16 hospitals.

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Article Synopsis
  • The study introduces a new catalyst, FeNi@P-NC, which consists of iron-nickel alloy nanoparticles embedded in a phosphorus-modified carbon-nitrogen framework, enhancing the efficiency of electrochemical nitrate reduction to ammonia.
  • The phosphorus modification reduces the d-orbital energy levels of the catalyst, allowing for better adsorption of reaction intermediates, thus improving catalytic performance compared to traditional iron and nickel catalysts.
  • The FeNi@P-NC catalyst achieves impressive results, with a 93% Faradaic efficiency for ammonia production and high durability, maintaining performance over multiple electrochemical cycles and extended operation time.
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Efficient lithium recovery from geothermal brines is crucial for the battery industry. Current electrochemical separation methods struggle with the simultaneous presence of Na, K, Mg, and Ca because these cations are similar to Li, making it challenging to separate effectively. We address these challenges with a three-chamber reactor featuring a polymer porous solid electrolyte in the middle layer.

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Thirteen new microperfuranones, including five pairs of enantiomers, (±)-nigenolides A-E (1a/1b-5a/5b), and three racemate nigenolides F-H (6-8), together with four known analogues (9-12) were isolated from a deep-sea-derived Aspergillus niger 3A00562. The absolute configurations of the five pairs of enantiomers were determined by the comparison of the calculated and experimental ECD spectra. Compounds 3a, 4a, 4b, and 12 were able to inhibit RSL3-induced ferroptosis.

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RNA modification has emerged as an important epigenetic mechanism that controls abnormal metabolism and growth in acute myeloid leukaemia (AML). However, the roles of RNA N-acetylcytidine (ac4C) modification in AML remain elusive. Here, we report that ac4C and its catalytic enzyme NAT10 drive leukaemogenesis and sustain self-renewal of leukaemic stem cells/leukaemia-initiating cells through reprogramming serine metabolism.

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Lignocellulosic ethanol is produced by yeast fermentation of lignocellulosic hydrolysates generated by chemical pretreatment and enzymatic hydrolysis of plant cell walls. The conversion of xylose into ethanol in hydrolysates containing microbial inhibitors is a major bottleneck in biofuel production. We identified sodium salts as the primary yeast inhibitors, and evolved a Saccharomyces cerevisiae strain overexpressing xylose catabolism genes in xylose or glucose-mixed medium containing sodium salts.

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Article Synopsis
  • A significant portion of spontaneous intracerebral hemorrhages (ICH) arise from macrovascular causes, necessitating a swift diagnosis, often through invasive procedures like digital subtraction angiography (DSA), which aren't suitable for all patients.
  • This study aimed to develop a new risk stratification score, the MACRO score, incorporating MRI findings to improve the identification of macrovascular causes of ICH.
  • The MACRO score successfully incorporates various patient factors and MRI markers, demonstrating better predictive capabilities than current CT-based scores, validating its effectiveness in a diverse patient population.
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Article Synopsis
  • - This study explores a novel method for producing hydrogen by examining how gaseous hydrogen fluoride (HF) reacts with sodium (Na), an alkali metal.
  • - Traditional models struggle to explain the dynamic interactions during these reactions, so the researchers created a reaction model using a metallic Na slab and placed HF molecules above it to simulate the reaction.
  • - The findings reveal that sodium interacts with HF, forming an intermediate compound (NaFH) that eventually breaks down into sodium fluoride (NaF) and hydrogen (H), with the breaking of the F-H bond being the crucial step in the reaction process.
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High-altitude pulmonary edema (HAPE) is a potentially fatal condition that occurs when exposed to high-altitude hypoxia environments. Currently, there is no effective treatment for HAPE, and available interventions focus on providing relief. Notoginsenoside R1 (NGR1), a major active constituent of Panax notoginseng (Burkill) F.

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