69 results match your criteria: "XinZhou Normal University[Affiliation]"

Context: Inspired by the newly synthesized endohedral fullerene T CH@C (1) and based on extensive density functional theory calculations, we predict herein a series of endohedral borafullerenes C CH@BC (4), T BH@BC (5), C HO@BC (6), C NH@BC (7), and T C@BC (8) which possess a BC (3) shell isovalent with C, with the neutral D C@BC (9) obtained from C@BC (8) by symmetric C─B substitutions. Detailed adaptive natural density partitioning (AdNDP) bonding analyses and iso-chemical shielding surfaces (ICSSs) calculations indicate that these core-shell species are spherically aromatic in nature, rendering high stability to the systems. More interestingly, based on the calculated effective donor-acceptor interaction between LP(O) → LV(B@BC) in HO@BC (6), we propose the concept of boron bond (BB) in chemistry which is defined as the in-phase orbital overlap between an electronegative atom A as lone-pair (LP) donor and an electron-deficient boron atom with a lone vacant (LV) orbital as LP acceptor.

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Effect of Warming on Soil Fungal Community Along Altitude Gradients in a Subalpine Meadow.

Microorganisms

December 2024

School of Resources and Environmental Engineering, Anhui University, Hefei 230601, China.

The subalpine grassland ecosystem is sensitive to climatic changes. Previous studies investigated the effects of warming on grassland ecosystems at a single altitude, with little information about the response of subalpine meadows to warming along altitude gradients. This study aimed to evaluate the effects of warming on aboveground grass, belowground soil properties, and fungal community along altitude gradients in the subalpine meadow of Mount Wutai using the high-throughput sequencing method.

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Correlation between self-efficacy, parental parenting patterns, and severe depression in adolescents.

World J Psychiatry

December 2024

Department of Physical Education, Xinzhou Normal University, Xinzhou 034000, Shanxi Province, China.

Background: Adolescence is a critical period marked by significant psychological changes. This study explores how self-efficacy and parental parenting styles may influence the risk of severe depression among teens. The hypothesis is that higher self-efficacy and authoritative parenting patterns will be negatively correlated with severe depression in adolescents.

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In semantic image segmentation tasks, most methods fail to fully use the characteristics of different scales and levels but rather directly perform upsampling. This may cause some effective information to be mistaken for redundant information and discarded, which in turn causes object segmentation confusion. As a convolutional layer deepens, the loss of spatial detail information makes the segmentation effect achieved at the object boundary insufficiently accurate.

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The concept of superhalogen was proposed for more than 40 years, and it has never been associated with planar tetracoordinate fluorine (ptF) species. In this work, using Li as the ligands and Cl, Br, I as the auxiliary atoms, we have designed the star-like FLiX (X = Cl, Br, I) clusters, which contain the ptF at the centers. They are all global minima (GMs) based on unbiased searches on the potential energy surfaces.

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The design and construction of dual-functional and high-efficiency electrochemical sensors are necessary for quantitative detection. In this work, a zinc-based metal-organic framework (MOF-5) and multi-walled carbon nanotubes (MWCNTs) were combined in situ through a simple solvothermal reaction to obtain an MOF-5@MWCNTs composite. The composite exhibits a large surface area, hierarchical pore structure, excellent conductivity, and enhanced electrochemical performance in the detection of acetaminophenol (AP) and dopamine (DA).

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Article Synopsis
  • Planar hypercoordination, a concept of molecular chemistry, has seen recent interest in incorporating hydrogen, culminating in the discovery of a D symmetric H©LiAu cluster with a planar tetracoordinate hydrogen (ptH) center.
  • Advanced computational methods like density functional theory (DFT) and ab initio calculations confirm that this newly designed H©LiAu structure represents a stable global minimum, showcasing robust dynamic stability.
  • The stability arises from electrostatic interactions and multicenter covalent bonds, making this ptH cluster a unique superhalogen anion, paving the way for potential experimental synthesis and characterization.
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Article Synopsis
  • Residual histograms can offer valuable statistics for low-level visual research, but current image denoising methods often overlook the benefits of using multiple residual histograms for optimization.
  • This paper introduces the alternating multiple residual Wasserstein regularization model (AMRW), designed to effectively utilize multiple residual Wasserstein constraints and different image prior knowledge for improved image denoising.
  • The AMRW framework enhances noise estimation by aligning the residual histograms of degraded images with a Gaussian noise histogram, allowing for significant improvements in image restoration quality and offering new insights for other visual processing tasks.
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Zn and ClO may be associated with a variety of pathologies, and their simultaneous measurement is crucial for disease diagnosis and environmental protection. In this work, we synthesized an independent AIE probe, HNTE, through a one step reaction. The probe HNTE displayed a distinctive fluorescence color change from deep yellow to blue for ClO and to green for Zn.

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Metal-Organic-Framework-Derived CuO-ZnO@CN Hollow Nanoreactors: Precise Structural Control and Efficient Catalytic Performance.

Langmuir

November 2024

Engineering Research Center of Ministry of Education for Fine Chemicals, School of Chemistry and Chemical Engineering, Shanxi University, Taiyuan 030006, China.

Hollow carbon-nitrogen nanoreactors constitute a class of porous materials that have widespread application owing to their large inner cavities, low densities, core-shell interfaces, and enrichment effects. Direct carbonization of precursors is the simplest and most economical method to prepare porous carbon-nitrogen materials; however, this method requires high temperatures, thus yielding nonoxide structures. In this study, CuO-ZnO@CN (CN: carbon-nitrogen layers) is prepared using the two-step heating of zeolitic imidazolium skeleton-8 (ZIF-8) coated with CuO-ZnO precursors.

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Dimorphopterus japonicus is a kind of pest which seriously harms sorghum and millet. In this study, we sequenced the mitochondrial whole genome of D. japonicus (Hidaka, 1959), and characterized and analyzed the mitogenome.

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Maintaining tissue homeostasis necessitates the coordinated efforts of various cell types to regulate inflammation. Endoplasmic reticulum (ER) stress, a hallmark of inflammation, exacerbates tissue pathology in various human diseases. Glutathione (GSH), a pivotal regulator of cellular redox balance, controls disulfide bond formation in the ER, thereby shielding cells from oxidative stress.

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Effective identification of debris-covered glaciers in Western China using multiple machine-learning algorithms.

Sci Total Environ

December 2024

State Key Laboratory of Cryospheric Science and Frozen Soil Engineering, Northwest Institute of Eco-Environment and Resources, Chinese Academy of Sciences, Lanzhou 730000, PR China. Electronic address:

Article Synopsis
  • Debris-covered glaciers (DCGs) are widespread globally, but identifying them automatically is difficult due to varying environmental complexities and glacier types; this study investigates 30 glacial areas in Western China utilizing machine learning for classification.
  • Four machine learning algorithms (RF, XGBoost, LightGBM, and SVM) were employed, integrating environmental variables like surface reflectance and temperature to distinguish between ice, snow, and debris in a three-step process, with Random Forests generally yielding the best results.
  • The study found that region-specific modeling improved accuracy in identifying DCGs, achieving high correlation with existing inventory data, suggesting the technique combines effective machine learning methods and environmental data for reliable glacier identification.
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Organic fluorophores exhibit pressure-dependent behaviors that are often irregular and contingent upon the specific system. Elucidating how pressure influences these behaviors is essential for the accurate design of piezochromic materials. Here, we conducted an exhaustive theoretical analysis of the excited-state decay processes of crystalline 2,3,4,5-tetraphenylthiophene (TPT) at high pressure through a combined quantum mechanics and molecular mechanics (QM/MM) method.

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Nature Reserve has complex habitats and rich species diversity but lacks systematic ecological surveys. We focused on Orchid in Nature Reserve, investigated and analyzed Orchid diversity and changes in community structure according to the characteristics of the alpine valleys in the study area, in terms of altitude gradient and habitat type, using the sample line method and the quadrat method. The results showed that 11 genera and 13 species of Orchidaceae were found in the survey, among which the species richness of was the highest, was the second highest, and the species richness of was the lowest, and the species with relative plurality ≥ 10% were (51.

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A highly selective and sensitive fluorescent probe, RHOQ, was designed for the detection of Hg by incorporating an 8-hydroxyquinoline moiety onto a rhodamine molecular platform with a suitable linker. In MeOH-Tris (20 mM, pH = 7.4, 1 : 9, v/v) buffer solution, RHOQ exhibited 550-fold fluorescence enhancement at 594 nm upon addition of Hg, with a fast response and a low detection limit (9.

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Field-based physical fitness assessment in preschool children in China.

BMC Public Health

October 2024

Department of Physical Education, XinZhou Normal University, Xinzhou City, Shanxi, China.

Article Synopsis
  • The study examines the physical fitness of 619 Chinese preschool children aged 3-6, using a variety of tests to assess their fitness levels.
  • Significant differences by gender were found in multiple fitness tests, with older children generally performing better than younger ones.
  • The findings underscore the importance of using field-based methods for evaluating physical fitness in preschool settings, aiding in understanding children's health now and in the future.
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Marine-derived fungi are assuming an increasingly central role in the search for natural leading compounds with unique chemical structures and diverse pharmacological properties. However, some gene clusters are not expressed under laboratory conditions. In this study, we have found that a marine-derived fungus sp.

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Microbial remediation has become the most promising technical means for the remediation of polycyclic aromatic hydrocarbons (PAHs) non-point source contaminated soil due to its low cost of treatment, complete degradation of pollutants, and remediation. In this study, in order to demonstrate the phenanthrene degrading microbial diversity, phenanthrene was chosen as the representative of PAHs and strains capable of degrading phenanthrene were isolated and screened from the sedimentation sludge and the bottom sludge of oil tank trucks, and high throughput sequencing was used to check the dominant strains with a good degrading effect on phenanthrene. Results showed even more than 50% of phenanthrene was degraded in all samples, the composition of PAH-degrading bacteria was diverse, and different environments constructed different functional microbial groups, which resulted in the microbial adapting to the diversity of the environment.

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In this work, a novel heterogeneous catalyst consisting of peroxophosphotungstate, microporous MOF-808, and mesoporous SBA-15 was synthesized, characterized, and used to remove sulfides from model fuel. The prepared material, PW@MOF-808@SBA-15, exhibits excellent catalytic activity with a desulfurization efficiency of 99.8% in 60 min for multicomponent simulated fuel, and the desulfurization rate can reach more than 90% after ten consecutive cycles.

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In this work, a fluorescent probe with aggregation-induced emission effect was synthesized by grafting naphtho[2,3-]furan-1,3-dione and 2-hydrazinylbenzo[]thiazole. The probe could recognize La selectively and sensitively accompanied with an obvious fluorescence and color change from green to blue. Moreover, with the help of AIE properties, probe N achieved the detection of La in the solid state.

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The current mainstream image restoration methods have difficulty fully learning the structure and color information of murals in mural image restoration tasks due to the limited size of the available datasets, resulting in problems such as structural loss and texture errors. This study proposes a two-stage mural restoration network based on an edge-constrained attention mechanism. This paper introduces additional sketches as inputs during the coarse restoration phase and incorporates a local edge loss function to enable the network to generate corresponding structural information based on the sketches.

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Near infrared aggregation-induced emission fluorescent materials for lipid droplets testing and photodynamic therapy.

Luminescence

September 2024

Hubei Key Laboratory of Radiation Chemistry and Functional Materials, School of Nuclear Technology and Chemistry & Biology, Hubei University of Science and Technology, Xianning, China.

Near-infrared (NIR) fluorescent probes with aggregation-induced emission (AIE) properties are of great significance in cell imaging and cancer therapy. However, the complexity of its synthesis, poor photostabilities, and expensive raw materials still pose some obstacles to their practical application. This study reported an AIE luminescent material with red emission and its application in in vitro imaging and photodynamic therapy (PDT) study.

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Alzheimer's disease is associated both with imbalances in Al production and changes in viscosity in cells. Their simultaneous measurement could therefore provide valuable insights into Alzheimer's disease pathology. Their simultaneous measurement would therefore be of great value in investigating the pathological mechanism of Alzheimer's disease.

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Regulating Aggregation-Induced Emission Luminogen for Multimodal Imaging-Navigated Synergistic Therapy Involving Anti-Angiogenesis.

Adv Sci (Weinh)

October 2024

School of Science and Engineering, Shenzhen Institute of Aggregate Science and Technology, The Chinese University of Hong Kong, Shenzhen, Guangdong, 518172, China.

Article Synopsis
  • - Phototheranostics is a promising cancer research method that combines real-time diagnosis with therapy using non-invasive light, but creating advanced materials for effective results is challenging.
  • - A new luminogen called DBD-TM has been developed, showcasing strong light-emitting properties in the near-infrared region and excellent heat conversion capabilities.
  • - By combining DBD-TM with sorafenib, researchers created a versatile nanomaterial for improved cancer treatment, achieving precise tumor diagnosis and significant tumor elimination, pointing towards a next-level approach in cancer theranostics.
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