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  • 1
    In: Advanced Functional Materials, Wiley, Vol. 32, No. 19 ( 2022-05)
    Abstract: Stabilizing Li‐rich layered oxides without capacity/voltage fade upon cycling is a prerequisite for a successful commercialization. Although the inhibition of structural and interfacial changes is identified as an effective strategy, the battery community always seeks for a technologically flexible method to make it really competitive among the cathode. Herein, the gradient W‐doping within Li 1.2 Mn 0.56 Ni 0.16 Co 0.08 O 2 (LLMO) is proposed to relieve crystal disintegration and simultaneously enhance interfacial stability because of the formation of Li 2 WO 4 coating layer on the material surface. This is mainly attributed to the scenario that partial Mn replacement by W can stabilize the LLMO structure and regulate the electrochemical activity of Mn element. The W‐doped LLMO (W@LLMO) possesses improved specific capacity and voltage stability (83.2% capacity retention and voltage retention of 94.9% after 200 cycles at 0.5 C). Besides, a practical pouch cell based on the W@LLMO cathode presents sufficient gravimetric energy density (318 Wh kg −1 ) and cycling stability (capacity retention of 87.7% after 500 cycles at 1.0 C). This study presents an effective method to design robust Li‐rich layered cathodes for next‐generation Li‐ion batteries.
    Type of Medium: Online Resource
    ISSN: 1616-301X , 1616-3028
    URL: Issue
    Language: English
    Publisher: Wiley
    Publication Date: 2022
    detail.hit.zdb_id: 2029061-5
    detail.hit.zdb_id: 2039420-2
    SSG: 11
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  • 2
    In: ChemistrySelect, Wiley, Vol. 9, No. 1 ( 2024-01-08)
    Abstract: An oxidative transformation from N ‐substituted benzylamine into the corresponding benzamides was developed here using the oxidative system combined from the catalytic amount of PVP−I (polyinyl pyrrolidone) with TBHP. This newly developed method had the advantages of mild reaction conditions and broad substrate scope. The key intermediate of Enzalutamide as androgen receptor inhibitors was prepared using this catalytic condition starting from commercial available 2‐fluoro‐4‐nitrobenzaldehyde with the yield of 78.5 % for three‐step reactions.
    Type of Medium: Online Resource
    ISSN: 2365-6549 , 2365-6549
    URL: Issue
    Language: English
    Publisher: Wiley
    Publication Date: 2024
    detail.hit.zdb_id: 2844262-3
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  • 3
    In: Molecular Ecology Resources, Wiley, Vol. 23, No. 5 ( 2023-07), p. 1182-1193
    Abstract: Ciliates are a large group of ubiquitous and highly diverse single‐celled eukaryotes that play an essential role in the functioning of microbial food webs. However, their genomic diversity is far from clear due to the need to develop cultivation methods for most species, so most research is based on wild organisms that almost invariably contain contaminants. Here we establish an integrated Genome Decontamination Pipeline (iGDP) that combines homology search, telomere reads‐assisted and clustering approaches to filter contaminated ciliate genome assemblies from wild specimens. We benchmarked the performance of iGDP using genomic data from a contaminated ciliate culture and the results showed that iGDP could recall 91.9% of the target sequences with 96.9% precision. We also used a synthetic dataset to offer guidelines for the application of iGDP in the removal of various groups of contaminants. Compared with several popular metagenome binning tools, iGDP could show better performance. To further validate the effectiveness of iGDP on real‐world data, we applied it to decontaminate genome assemblies of three wild ciliate specimens and obtained their genomes with high quality comparable to that of previously well‐studied model ciliate genomes. It is anticipated that the newly generated genomes and the established iGDP method will be valuable community resources for detailed studies on ciliate biodiversity, phylogeny, ecology and evolution. The pipeline ( https://github.com/GWang2022/iGDP ) can be implemented automatically to reduce manual filtering and classification and may be further developed to apply to other microeukaryotes.
    Type of Medium: Online Resource
    ISSN: 1755-098X , 1755-0998
    URL: Issue
    Language: English
    Publisher: Wiley
    Publication Date: 2023
    detail.hit.zdb_id: 2406833-0
    SSG: 12
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  • 4
    In: Advanced Science, Wiley, Vol. 8, No. 20 ( 2021-10)
    Abstract: Respiratory tract microbiome is closely related to respiratory tract infections, while characterization of oropharyngeal microbiome in recovered coronavirus disease 2019 (COVID‐19) patients is not studied. Herein, oropharyngeal swabs are collected from confirmed cases (CCs) with COVID‐19 (73 subjects), suspected cases (SCs) (36), confirmed cases who recovered (21), suspected cases who recovered (36), and healthy controls (Hs) (140) and then completed MiSeq sequencing. Oropharyngeal microbial α ‐diversity is markedly reduced in CCs versus Hs. Opportunistic pathogens are increased, while butyrate‐producing genera are decreased in CCs versus Hs. The classifier based on eight optimal microbial markers is constructed through a random forest model and reached great diagnostic efficacy in both discovery and validation cohorts. Notably, the classifier successfully diagnosed SCs with positive IgG antibody as CCs and is demonstrated from the perspective of the microbiome. Importantly, several genera with significant differences gradually increase and decrease along with recovery from COVID‐19. Forty‐four oropharyngeal operational taxonomy units (OTUs) are closely correlated with 11 clinical indicators of SARS‐CoV‐2 infection and Hs based on Spearman correlation analysis. Together, this research is the first to characterize oropharyngeal microbiota in recovered COVID‐19 cases and suspected cases, to successfully construct and validate the diagnostic model for COVID‐19 and to depict the correlations between microbial OTUs and clinical indicators.
    Type of Medium: Online Resource
    ISSN: 2198-3844 , 2198-3844
    URL: Issue
    Language: English
    Publisher: Wiley
    Publication Date: 2021
    detail.hit.zdb_id: 2808093-2
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